Mostrando entradas con la etiqueta NASA’s Hubble Space Telescope. Mostrar todas las entradas
Mostrando entradas con la etiqueta NASA’s Hubble Space Telescope. Mostrar todas las entradas

domingo, 26 de marzo de 2017

domingo, 10 de abril de 2016

NASA : Computer-Simulated Image of a Supermassive Black Hole .- Imagen simulada en Computer-de un Agujero Negro supermasivo

http://www.nasa.gov/image-feature/computer-simulated-image-of-a-supermassive-black-hole

Computer simulation of a supermassive black hole at the core of a galaxy
This computer-simulated image shows a supermassive black hole at the core of a galaxy. The black region in the center represents the black hole’s event horizon, where no light can escape the massive object’s gravitational grip. The black hole’s powerful gravity distorts space around it like a funhouse mirror. Light from background stars is stretched and smeared as the stars skim by the black hole.
 
Astronomers have uncovered a near-record breaking supermassive black hole, weighing 17 billion suns, in an unlikely place: in the center of a galaxy in a sparsely populated area of the universe. The observations, made by NASA’s Hubble Space Telescope and the Gemini Telescope in Hawaii, may indicate that these monster objects may be more common than once thought.
 
Until now, the biggest supermassive black holes – those roughly 10 billion times the mass of our sun – have been found at the cores of very large galaxies in regions of the universe packed with other large galaxies. In fact, the current record holder tips the scale at 21 billion suns and resides in the crowded Coma galaxy cluster that consists of over 1,000 galaxies.
Image Credit: NASA, ESA, and D. Coe, J. Anderson, and R. van der Marel (STScI)
Last Updated: April 6, 2016
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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domingo, 3 de abril de 2016

NASA : Hubble Peers Into the Heart of the Milky Way Galaxy.- Compañeros del Telescopio Espacial Hubble en el corazón de la Vía Láctea

Hola amigos: A VUELO DE UN QUINDE EL BLOG., Asomándose profundamente en el corazón de polvo de la Vía Láctea usando la visión infrarroja, el telescopio espacial Hubble de la NASA revela un rico tapiz de más de medio millón de estrellas. A excepción de algunas estrellas de primer plano de color azul, las estrellas son parte del cúmulo de estrellas nuclear de la Vía Láctea, el cúmulo más masivo y más densa estrellas en nuestra galaxia. Así lleno de estrellas, es equivalente a tener un millón de soles embutida entre nosotros y nuestro vecino estelar más cercano, Alpha Centauri. En el mismo centro de nuestra galaxia, este cúmulo de estrellas rodea el agujero negro supermasivo central de la Vía Láctea, que es de aproximadamente 4 millones de veces la masa de nuestro sol.
More information.........

Infrared Hubble image of a star cluster at the core of the Milky Way
Peering deep into the dusty heart of our Milky Way galaxy using infrared vision, NASA’s Hubble Space Telescope reveals a rich tapestry of more than half a million stars. Except for a few blue foreground stars, the stars are part of the Milky Way’s nuclear star cluster, the most massive and densest star cluster in our galaxy. So packed with stars, it is equivalent to having a million suns crammed between us and our closest stellar neighbor, Alpha Centauri. At the very hub of our galaxy, this star cluster surrounds the Milky Way’s central supermassive black hole, which is about 4 million times the mass of our sun.
Image Credit: NASA, ESA, and Hubble Heritage Team (STScI/AURA, Acknowledgment: T. Do, A.Ghez (UCLA), V. Bajaj (STScI)
Last Updated: March 31, 2016
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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domingo, 21 de febrero de 2016

WFIRST: The Best of Both Worlds.- NASA Introduces New, Wider Set of Eyes on the Universe .- La NASA presenta el nuevo, más amplio conjunto de ojos en el Universo


The WFIRST will image large regions of the sky in near-infrared light to answer fundamental questions about the structure and evolution of the universe and greatly expand our knowledge of planetary systems around other stars.
Credits: NASA

The telescope’s sensitivity and wide view will enable a large-scale search for exoplanets by monitoring the brightness of millions of stars in the crowded central region of our galaxy. The survey will net thousands of new exoplanets similar in size and distance from their star as those in our own solar system, complementing the work started by NASA's Kepler mission and the upcoming work of the Transiting Exoplanet Survey Satellite.

Employing multiple techniques, astronomers also will use WFIRST to track how dark energy and dark matter have affected the evolution of our universe. Dark energy is a mysterious, negative pressure that has been speeding up the expansion of the universe. Dark matter is invisible material that makes up most of the matter in our universe.

By measuring the distances of thousands of supernovae, astronomers can map in detail how cosmic expansion has increased with time. WFIRST also can precisely measure the shapes, positions and distances of millions of galaxies to track the distribution and growth of cosmic structures, including galaxy clusters and the dark matter accompanying them.

"In addition to its exciting capabilities for dark energy and exoplanets, WFIRST will provide a treasure trove of exquisite data for all astronomers," said Neil Gehrels, WFIRST project scientist at NASA's Goddard Space Flight Center in Greenbelt, Maryland. "This mission will survey the universe to find the most interesting objects out there."

WFIRST is slated to launch in the mid-2020s. The observatory will begin operations after travelling to a gravitational balance point known as Earth-Sun L2, which is located about one million miles from Earth in a direction directly opposite the Sun.

WFIRST is managed at Goddard, with participation by the Jet Propulsion Laboratory (JPL) in Pasadena, California, the Space Telescope Science Institute in Baltimore, the Infrared Processing and Analysis Center, also in Pasadena, and a science team comprised of members from U.S. research institutions across the country.

For more information about NASA's WFIRST mission, visit:


-end-
Felicia Chou
Headquarters, Washington
202-358-0257
felicia.chou@nasa.gov

Lynn Chandler
Goddard Space Flight Center, Greenbelt, Md.
301-286-2806
lynn.chandler-1@nasa.gov
Last Updated: Feb. 18, 2016
Editor: Karen Northon

NASA Introduces New, Wider Set of Eyes on the Universe


NASA's Wide Field Infrared Survey Telescope
NASA's Wide Field Infrared Survey Telescope (WFIRST), illustrated here, will carry a Wide Field Instrument to capture Hubble-quality images covering large swaths of sky, enabling cosmic evolution studies. Its Coronagraph Instrument will directly image exoplanets and study their atmospheres.
Credits: NASA/GSFC/Conceptual Image Lab
 
After years of preparatory studies, NASA is formally starting an astrophysics mission designed to help unlock the secrets of the universe -- the Wide Field Infrared Survey Telescope (WFIRST).

With a view 100 times bigger than that of NASA’s Hubble Space Telescope, WFIRST will aid researchers in their efforts to unravel the secrets of dark energy and dark matter, and explore the evolution of the cosmos. It also will discover new worlds outside our solar system and advance the search for worlds that could be suitable for life.

NASA's Agency Program Management Council, which evaluates the agency's programs and projects on content, risk management, and performance, made the decision to move forward with the mission on Wednesday.

“WFIRST has the potential to open our eyes to the wonders of the universe, much the same way Hubble has,” said John Grunsfeld, astronaut and associate administrator of NASA’s Science Mission Directorate at Headquarters in Washington. "This mission uniquely combines the ability to discover and characterize planets beyond our own solar system with the sensitivity and optics to look wide and deep into the universe in a quest to unravel the mysteries of dark energy and dark matter.”

WFIRST is the agency's next major astrophysics observatory, following the launch of the James Webb Space Telescope in 2018. The observatory will survey large regions of the sky in near-infrared light to answer fundamental questions about the structure and evolution of the universe, and expand our knowledge of planets beyond our solar system – known as exoplanets.

It will carry a Wide Field Instrument for surveys, and a Coronagraph Instrument designed to block the glare of individual stars and reveal the faint light of planets orbiting around them. By blocking the light of the host star, the Coronagraph Instrument will enable detailed measurements of the chemical makeup of planetary atmospheres. Comparing these data across many worlds will allow scientists to better understand the origin and physics of these atmospheres, and search for chemical signs of environments suitable for life.

"WFIRST is designed to address science areas identified as top priorities by the astronomical community," said Paul Hertz, director of NASA's Astrophysics Division in Washington. “The Wide-Field Instrument will give the telescope the ability to capture a single image with the depth and quality of Hubble, but covering 100 times the area. The coronagraph will provide revolutionary science, capturing the faint, but direct images of distant gaseous worlds and super-Earths."
NASA
Guillermo Gonzalo Sánchez  Achutegui

domingo, 16 de agosto de 2015

NASA : Hubble Looks at Stunning Spiral .- El Telescopio Hubble mira una impresionante Galaxia Espiral.........

Hola amigos: A VUELO DE UN QUINDE EL BLOG., Hemos recibido información de la Agencia Espacial NASA, de la captación de un pequeña Galaxia, conocida como : LEDA 89996, pero oficialmente el nombre es:: This little-known galaxy, officially named J04542829-6625280, ubicada en la Constelación  El Dorado(El Pez Espada).
NASA nos dice: " es un ejemplo clásico de una galaxia espiral. La galaxia es muy similar a nuestra propia galaxia, la Vía Láctea. La galaxia en forma de disco se ve en la cara, revelando la estructura de bobinado de los brazos espirales. Manchas oscuras en estos brazos espirales son de hecho polvo y gas - las materias primas para nuevas estrellas. Las muchas estrellas jóvenes que se forman en estas regiones hacen que los brazos espirales aparecen brillantes y azulado....."

More information :
 http://www.nasa.gov/image-feature/goddard/hubble-sees-a-a-mess-of-stars

A classic spiral galaxy
This little-known galaxy, officially named J04542829-6625280, but most often referred to as LEDA 89996, is a classic example of a spiral galaxy. The galaxy is much like our own galaxy, the Milky Way. The disk-shaped galaxy is seen face on, revealing the winding structure of the spiral arms. Dark patches in these spiral arms are in fact dust and gas — the raw materials for new stars. The many young stars that form in these regions make the spiral arms appear bright and bluish.
The galaxy sits in a vibrant area of the night sky within the constellation of Dorado (The Swordfish), and appears very close to the Large Magellanic Cloud  — one of the satellite galaxies of the Milky Way.
The observations were carried out with the high resolution channel of Hubble’s Advanced Camera for Surveys. 
Image credit: ESA/Hubble & NASA, Acknowledgement: Flickr user C. Claude
Text credit: European Space Agency
Last Updated: July 30, 2015
Editor: Ashley Morrow
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com 
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domingo, 14 de junio de 2015

NASA : NASA’s Hubble Telescope Detects ‘Sunscreen’ Layer on Distant Planet.- Telescopio Espacial Hubble detecta un planeta(WASP-33b. ) con una capa solar

NASA’s Hubble Telescope Detects ‘Sunscreen’ Layer on Distant Planet

Utilizando el telescopio Hubble de la NASA, los científicos detectaron una estratosfera del planeta WASP-33b. Un estratosfera se produce cuando las moléculas en la atmósfera absorben luz ultravioleta y visible de la estrella. Esta absorción se calienta la estratosfera y actúa como una especie de capa de protector solar para el planeta a continuación. Este video es de dominio público y se puede descargar en: http://svs.gsfc.nasa.gov/goto?11898

More information...
http://www.nasa.gov/press-release/nasa-s-hubble-telescope-detects-sunscreen-layer-on-distant-planet
NASA’s Hubble Space Telescope has detected a stratosphere, one of the primary layers of Earth’s atmosphere, on a massive and blazing-hot exoplanet known as WASP-33b.
The presence of a stratosphere can provide clues about the composition of a planet and how it formed. This atmospheric layer includes molecules that absorb ultraviolet and visible light, acting as a kind of “sunscreen” for the planet it surrounds. Until now, scientists were uncertain whether these molecules would be found in the atmospheres of large, extremely hot planets in other star systems.
These findings will appear in the June 12 issue of the Astrophysical Journal.
“Some of these planets are so hot in their upper atmospheres, they’re essentially boiling off into space,” said Avi Mandell, a planetary scientist at NASA’s Goddard Space Flight Center in Greenbelt, Maryland, and a co-author of the study. “At these temperatures, we don’t necessarily expect to find an atmosphere that has molecules that can lead to these multilayered structures.”
 
Atmosphere of exoplanet WASP-33b
WASP-33b’s stratosphere was detected by measuring the drop in light as the planet passed behind its star (top). Temperatures in the low stratosphere rise because of molecules absorbing radiation from the star (right). Without a stratosphere, temperatures would cool down at higher altitudes (left).
Credits: NASA/Goddard
 
In Earth’s atmosphere, the stratosphere sits above the troposphere -- the turbulent, active-weather region that reaches from the ground to the altitude where nearly all clouds top out. In the troposphere, the temperature is warmer at the bottom – ground level – and cools down at higher altitudes.
The stratosphere is just the opposite. In this layer, the temperature increases with altitude, a phenomenon called temperature inversion. On Earth, temperature inversion occurs because ozone in the stratosphere absorbs much of the sun’s ultraviolet radiation, preventing it from reaching the surface, protecting the biosphere, and therefore warming the stratosphere instead.
Similar temperature inversions occur in the stratospheres of other planets in our solar system, such as Jupiter and Saturn. In these cases, the culprit is a different group of molecules called hydrocarbons. Neither ozone nor hydrocarbons, however, could survive at the high temperatures of most known exoplanets, which are planets outside our solar system. This leads to a debate as to whether stratospheres would exist on them at all.
Using Hubble, the researchers have settled this debate by identifying a temperature inversion in the atmosphere of WASP-33b, which has about four-and-a-half times the mass of Jupiter. Team members also think they know which molecule in WASP-33b’s atmosphere caused the inversion -- titanium oxide.
“These two lines of evidence together make a very convincing case that we have detected a stratosphere on an exoplanet,” said Korey Haynes, lead author of the study. Haynes was a graduate student at George Mason University in Fairfax, Virginia, and was working at Goddard with Mandell when the research was conducted.
The researchers analyzed observations made with Hubble’s Wide Field Camera 3 by co-author Drake Deming at the University of Maryland in College Park. Wide Field Camera 3 can capture a spectrum of the near-infrared region where the signature for water appears. Scientists can use the spectrum to identify water and other gases in a distant planet’s atmosphere and determine its temperature.
Haynes and her colleagues used the Hubble observations, and data from previous studies, to measure emission from water and compare it to emission from gas deeper in the atmosphere. The team determined that emission from water was produced in the stratosphere at about 6,000 degrees Fahrenheit. The rest of the emission came from gas lower in the atmosphere that was at a temperature about 3,000 degrees Fahrenheit.
The team also presented the first observational evidence that WASP-33b’s atmosphere contains titanium oxide, one of only a few compounds that is a strong absorber of visible and ultraviolet radiation and capable of remaining in gaseous form in an atmosphere as hot as this one.
“Understanding the links between stratospheres and chemical compositions is critical to studying atmospheric processes in exoplanets,” said co-author Nikku Madhusudhan of the University of Cambridge, United Kingdom. “Our finding marks a key breakthrough in this direction.”
For images and more information about Hubble, visit:
-end-
Felicia Chou
Headquarters, Washington
202-358-0257
felicia.chou@nasa.gov

Nancy Neal-Jones / Elizabeth Zubritsky
Goddard Space Flight Center, Greenbelt, Md.
301-286-0039 / 301-614-5438
nancy.n.jones@nasa.gov / elizabeth.a.zubritsky@nasa.gov
Last Updated: June 14, 2015
Editor: Karen Northon

NASA
Guillermo Gonzalo Sánchez Achutegui
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domingo, 26 de abril de 2015

NASA : Celebrate With NASA as Agency Commemorates Hubble Space Telescope’s 25th Anniversary .- nasa, CELEBRA EL 25 ANIVERSARIO DEL LANZAMIENTO DEL TELESCOPIO ESPACIAL HUBBLE

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Agencia Espacial NASA, que está celebrando el aniversario del lanzamiento al espacio del Telescopio Espacial Hubble, esto sucedió un 24 de abril del 1,990, que fue llevado en el Transbordador Espacial Discovery, ciertamente a Hubble le debemos muchas cosas y tal vez la más importante fue la determinación de la edad del Universo en 13,700 Mil millones de años, más el descubrimiento de galaxias, estrellas, e infinidad de muchos otros acontecimientos espaciales.


Hubble Space Telescope
NASA’s Hubble Space Telescope is turning 25 this year. The observatory has transformed our understanding of our solar system and beyond, and helped us find our place among the stars.
Credits: NASA
 
NASA is celebrating the Hubble Space Telescope's 25th anniversary with a variety of events highlighting its groundbreaking achievements and scientific contributions with activities running April 20-26.
Hubble, the world’s first space telescope, was launched on April 24, 1990 aboard the space shuttle Discovery. In its quarter-century in orbit, the observatory has transformed our understanding of our solar system and beyond, and helped us find our place among the stars.
Starting at midnight EDT on Monday, April 20, and running through Sunday, April 26, images taken by the Hubble Space Telescope will be broadcast several times each hour on the Toshiba Vision dual LED screens in Times Square, New York.
The IMAX movie Hubble 3D is playing at select theatres across the United States throughout April. Hubble images come to vast, three-dimensional life, taking audiences through the telescope's 25-year existence and putting them in orbit with astronauts during the latest servicing mission. For more information and the trailer, visit:

Commemorative 3-D Hubble model and logo files will be available beginning April 20. The files can be downloaded and printed using a 3-D printer and assembled into a miniature Hubble model. For more information, visit:
NASA Television will air the following anniversary events:
  • Thursday, April 23 (9 to 9:45 a.m.) -- Newseum, 555 Pennsylvania Ave. NW, Washington -- NASA will unveil the official Hubble 25th anniversary image at this public event, with remarks by NASA Administrator Charlie Bolden, Associate Administrator for the Science Mission Directorate John Grunsfeld, Hubble Senior Project Scientist Jennifer Wiseman, and Space Telescope Science Institute Interim Director Kathryn Flanagan.
  • Friday, April 24 (8 to 9 p.m.) – Smithsonian’s National Air and Space Museum, 600 Independence Ave. SW, Washington -- Astronauts, scientists, engineers, technicians, educators, and staff who have contributed to Hubble’s success will be honored at a closed ceremony, followed by talks from prominent officials whose significant contribution to space science have made Hubble possible. For media interviews, contact Dwayne Brown at 202-358-1726, or dwayne.c.brown@nasa.gov.
  • Saturday, April 25 (10 a.m. to 3 p.m.) – National Air and Space Museum’s Steven F. Udvar-Hazy Center, 14390 Air and Space Museum Pkwy., Chantilly, Virginia -- The museum is holding an open family day event featuring panels of astronauts, scientists and engineers. Speakers will recount the history of Hubble and discuss its successor, the James Webb Space Telescope. For media interviews, contact Dwayne Brown at 202-358-1726, or dwayne.c.brown@nasa.gov. For more information, visit:

For NASA TV streaming video, schedules and downlink information, visit:

For more Hubble 25th Anniversary events, visit:

For more information about NASA’s Hubble Space Telescope, visit:
-end-
Felicia Chou
Headquarters, Washington
202-358-0257
felicia.chou@nasa.gov
Last Updated: April 26, 2015
Editor: Karen Northon
NASA
Guillermo Gonzalo Sánchez Achutegui
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viernes, 3 de abril de 2015

NASA : Experience NASA at the 2015 SXSW Interactive Festival.- La experiencia de la NASA en el 2015 SXSW Festival Interactivo

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido de la Agencia Espacial NASA, la información de que : NASA vuelve a la South by Southwest (SXSW) Festival Interactivo de marzo 13 a 18, en Austin, Texas, para compartir con los asistentes al festival cómo exploración unidades de tecnología, cómo estamos explorando la Tierra, el sistema solar y más allá, actualizaciones sobre el viaje a Marte, y cómo cualquier persona puede involucrarse con la NASA..................."
 
NASA at South by Southwest
Image Credit: 
NASA
 
NASA returns to the South by Southwest (SXSW) Interactive Festival March 13-18, in Austin, Texas to share with festival attendees how technology drives exploration, how we are exploring Earth, the solar system and beyond, updates on the journey to Mars, and how anyone can get involved with NASA.
 
Eleven sessions will feature NASA topics, including a look at life on the International Space Station, the Hubble Space Telescope turning 25, and NASA prizes and challenges. For more information about NASA sessions at SXSW, please visit:
Several NASA-related events are happening on Sunday, March 15. At 12:30 p.m. CDT, astronaut Reid Wiseman, who recently returned from six-month flight on the International Space Station, will talk about his mission conducting science and gathering data from the orbiting laboratory. 
 
At 3:30 p.m. at the “NASA Prizes: Dream It, Make It, Win It” panel, NASA will announce the results of the Asteroid Data Hunter challenge, which kicked off during last year’s SXSW festival. Panelists will highlight how amateur astronomers and citizen scientists everywhere can be an asteroid hunter.
The space community at SXSW will come together for a NASA Meet Up with fellow space enthusiasts and NASA engineers, scientists, astronauts, researchers, technicians, and more at 5 p.m. at the JW Marriott in Austin.
At 8 p.m., IMAX will provide a complimentary screening of Hubble 3-D at the Bob Bullock IMAX Theatre for members of the public. Following the screening, some of the team behind NASA’s Hubble Space Telescope, including Dr. John Grunsfeld, astronaut and associate administrator of NASA’s Science Mission Directorate, will discuss Hubble’s accomplishments in the last 25 years. The Bob Bullock IMAX Theatre is at 1800 N. Congress Avenue in Austin.
 
In addition to the sessions, participants at SXSW can visit the "Experience NASA" exhibit March 15-18 at the SXSW Tradeshow in the Austin Convention Center. Festival attendees can learn about how to collaborate with NASA on citizen science projects, participate in NASA prizes and challenges, and get the latest information on exciting NASA mission, which include exploring other planets, examining Earth, improving air travel and getting ready to launch humans to deep space.
The Northrop Grumman Corporation is highlighting NASA’s James Webb Space Telescope in an exhibit at the SXSW Gaming Expo at the Palmer Events Center March 13-15. The Webb Telescope exhibit will feature touch screens to show science visualizations and other videos. Visitors can talk with scientists and engineers who will share how Webb will inspire the next generation of scientists and engineers to push the boundaries of science and technology.
Missions and programs presenting at SXSW will provide updates from their sessions via their mission social media accounts. Festival attendees are encouraged to share what they learn about NASA throughout the SXSW Interactive Festival by tagging social media posts, pictures and more with #NASASXSW.
 
Find NASA missions on social media at:
NASA
Guillermo Gonzalo Sánchez Achutegui
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domingo, 15 de marzo de 2015

NASA : NASA’s Hubble Observations Suggest Underground Ocean on Jupiter's Largest Moon .- Las observaciones del Telescopio Espacial Hubble de la NASA Sugiera la existencia de océano subterraneo en Gaminedes, el más grande satélite de Júpiter

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido de la Agencia Espacial NASA, la información que el Telescopio Espacial Hubble, ha captado información sobre la existencia de un Océano Subterráneo en Ganímedes que bien a ser el satélite más grande del Planeta Júpiter.
NASA, nos dice : " Telescopio Espacial Hubble de la NASA tiene la mejor evidencia hasta ahora de un océano de agua salada subterránea en Ganímedes, la luna más grande de Júpiter. El océano subterráneo se cree que tiene más agua que toda el agua en la superficie de la Tierra...."

More information....

Artist concept of Ganymede and Jupiter
In this artist’s concept, the moon Ganymede orbits the giant planet Jupiter. NASA’s Hubble Space Telescope observed aurorae on the moon generated by Ganymede’s magnetic fields. A saline ocean under the moon’s icy crust best explains shifting in the auroral belts measured by Hubble.
Image Credit: 
NASA/ESA
NASA’s Hubble Space Telescope has the best evidence yet for an underground saltwater ocean on Ganymede, Jupiter’s largest moon. The subterranean ocean is thought to have more water than all the water on Earth's surface.
Identifying liquid water is crucial in the search for habitable worlds beyond Earth and for the search of life as we know it.
“This discovery marks a significant milestone, highlighting what only Hubble can accomplish,” said John Grunsfeld, associate administrator of NASA’s Science Mission Directorate at NASA Headquarters, Washington. “In its 25 years in orbit, Hubble has made many scientific discoveries in our own solar system. A deep ocean under the icy crust of Ganymede opens up further exciting possibilities for life beyond Earth.”
Ganymede is the largest moon in our solar system and the only moon with its own magnetic field. The magnetic field causes aurorae, which are ribbons of glowing, hot electrified gas, in regions circling the north and south poles of the moon. Because Ganymede is close to Jupiter, it is also embedded in Jupiter’s magnetic field. When Jupiter’s magnetic field changes, the aurorae on Ganymede also change, “rocking” back and forth.
By watching the rocking motion of the two aurorae, scientists were able to determine that a large amount of saltwater exists beneath Ganymede’s crust affecting its magnetic field.
Hubble telescope image of Ganymede auroral belts
NASA Hubble Space Telescope images of Ganymede's auroral belts (colored blue in this illustration) are overlaid on a Galileo orbiter image of the moon. The amount of rocking of the moon's magnetic field suggests that the moon has a subsurface saltwater ocean.
Image Credit: 
NASA/ESA
A team of scientists led by Joachim Saur of the University of Cologne in Germany came up with the idea of using Hubble to learn more about the inside of the moon.
"I was always brainstorming how we could use a telescope in other ways," said Saur. "Is there a way you could use a telescope to look inside a planetary body? Then I thought, the aurorae! Because aurorae are controlled by the magnetic field, if you observe the aurorae in an appropriate way, you learn something about the magnetic field. If you know the magnetic field, then you know something about the moon’s interior."
If a saltwater ocean were present, Jupiter’s magnetic field would create a secondary magnetic field in the ocean that would counter Jupiter’s field. This “magnetic friction” would suppress the rocking of the aurorae. This ocean fights Jupiter's magnetic field so strongly that it reduces the rocking of the aurorae to 2 degrees, instead of the 6 degrees, if the ocean was not present.
Scientists estimate the ocean is 60 miles (100 kilometers) thick – 10 times deeper than Earth's oceans – and is buried under a 95-mile (150-kilometer) crust of mostly ice.
Scientists first suspected an ocean in Ganymede in the 1970s, based on models of the large moon. NASA's Galileo mission measured Ganymede's magnetic field in 2002, providing the first evidence supporting those suspicions. The Galileo spacecraft took brief "snapshot" measurements of the magnetic field in 20-minute intervals, but its observations were too brief to distinctly catch the cyclical rocking of the ocean’s secondary magnetic field.
The new observations were done in ultraviolet light and could only be accomplished with a space telescope high above the Earth's atmosphere, which blocks most ultraviolet light.
NASA’s Hubble Space Telescope is celebrating 25 years of groundbreaking science on April 24. It has transformed our understanding of our solar system and beyond, and helped us find our place among the stars. To join the conversation about 25 years of Hubble discoveries, use the hashtag #Hubble25.
Hubble is a project of international cooperation between NASA and ESA (European Space Agency). NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the telescope. The Space Telescope Science Institute (STScI) in Baltimore, Maryland, conducts Hubble science operations. STScI is operated for NASA by the Association of Universities for Research in Astronomy, Inc., in Washington.
For images and more information about Hubble, visit:
and
NASA
Guillermo Gonzalo Sánchez Achutegui
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domingo, 26 de octubre de 2014

NASA : Close Encounters: Comet Siding Spring Seen Next to Mars .- Encuentros: Cometa Siding Spring VISTO Junto a Marte

Hola amigos: A VUELO DE UN QUINDE EL BLOG., la Agencia Espacial NASA, nos informa que le Cometa Siding Spring fue visto junto al planeta Marte; la vista fue captada por NASA’s Hubble Space Telescope; ......
Siding Spring, designado oficialmente cometa C / 2013 A1, hizo su máxima aproximación a Marte a las 2:28 pm EDT el 19 de octubre, a una distancia de aproximadamente 87.000 millas. Eso es alrededor de un tercio de la distancia entre la Tierra y la Luna. En ese momento, el cometa y Marte fueron de 149 millones de kilómetros de la Tierra.......La imagen de un cometa es un compuesto de exposiciones del Hubble tomadas entre el 18 de octubre de 8:06 am a 19 de octubre, 23:17 Hubble tomó una imagen separada de Marte a las 10:37 pm del 18 de octubre........
El Marte y las imágenes del cometa se han añadido para crear una sola imagen para ilustrar la separación angular, o distancia, entre el cometa y Marte en su máximo acercamiento. La separación es de aproximadamente 1,5 minutos de arco, o una vigésima parte del diámetro angular de la Luna Llena. El campo de estrellas de fondo en esta imagen compuesta se sintetiza a partir de datos del telescopio con base en tierra que proporciona el Palomar Digital Sky Survey, que ha sido reprocesado para aproximarse a la resolución del Telescopio Espacial Hubble.....................

This composite NASA Hubble Space Telescope Image captures the positions of comet Siding Spring and Mars in a never-before-seen close passage of a comet by the Red Planet
This composite NASA Hubble Space Telescope Image captures the positions of comet Siding Spring and Mars in a never-before-seen close passage of a comet by the Red Planet, which happened at 2:28 p.m. EDT October 19, 2014.
Image Credit: 
NASA, ESA, PSI, JHU/APL, STScI/AURA
NASA’s Hubble Space Telescope has produced a unique composite image of comet Siding Spring as it made its never-before-seen close passage of a comet by Mars.
Siding Spring, officially designated Comet C/2013 A1, made its closest approach to Mars at 2:28 p.m. EDT on Oct. 19, at a distance of approximately 87,000 miles. That is about one-third of the distance between Earth and the moon. At that time, the comet and Mars were about 149 million miles from Earth.
The comet image is a composite of Hubble exposures taken between Oct. 18, 8:06 a.m. to Oct. 19, 11:17 p.m. Hubble took a separate image of Mars at 10:37 p.m. on Oct. 18.
The Mars and comet images have been added together to create a single picture to illustrate the angular separation, or distance, between the comet and Mars at closest approach. The separation is approximately 1.5 arc minutes, or one-twentieth of the angular diameter of the full moon. The background star field in this composite image is synthesized from ground-based telescope data provided by the Palomar Digital Sky Survey, which has been reprocessed to approximate Hubble’s resolution.
The solid icy comet nucleus is too small to be resolved in the Hubble picture. The comet’s bright coma, a diffuse cloud of dust enshrouding the nucleus, and a dusty tail, are clearly visible.
This is a composite image because a single exposure of the stellar background, comet Siding Spring, and Mars would be problematic. Mars actually is 10,000 times brighter than the comet, so it could not be properly exposed to show detail in the Red Planet. The comet and Mars also were moving with respect to each other and could not be imaged simultaneously in one exposure without one of the objects being motion blurred. Hubble had to be programmed to track on the comet and Mars separately in two different observations.
NASA used its extensive fleet of science assets, particularly those orbiting and roving Mars, to image and study this once-in-a-lifetime comet flyby. In preparation for the comet flyby, NASA maneuvered its Mars Odyssey orbiter, Mars Reconnaissance Orbiter (MRO), and the newest member of the Mars fleet, Mars Atmosphere and Volatile EvolutioN (MAVEN), in order to reduce the risk of impact with high-velocity dust particles coming off the comet.  Other NASA space observatories also joined Hubble in observing the encounter, along with ground-based telescopes on Earth.
Siding Spring is the first comet from our solar system’s Oort Cloud to be studied up close. The Oort Cloud, well beyond the outer-most planets that surround our sun, is a spherical region of icy objects believed to be material left over from the formation of the solar system.
The new composite image was taken with Hubble’s Wide Field Camera 3. To view the image, visit:
 
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Guillermo Gonzalo Sánchez Achutegui
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sábado, 18 de octubre de 2014

NASA : NASA's Hubble Maps the Temperature and Water Vapor on an Extreme Exoplanet

Hola amigos;  A VUELO DE UN QUINDE EL BLOG., Un equipo de científicos usando el Telescopio Espacial Hubble de la NASA ha hecho el mapa global más detallado de la luz de un planeta turbulento fuera del sistema solar, que revela sus secretos de las temperaturas del aire y vapor de agua.
Observaciones del Hubble muestran el exoplaneta, llamado WASP-43b, hay lugar para llamar a casa. Es un mundo de extremos, donde los vientos hirvientes aúllan a la velocidad del sonido a partir de un lado de "día" 3.000 grados Fahrenheit, lo suficientemente caliente como para fundir el acero, a un negro como la pez "noche" codo con hundiendo temperaturas por debajo de 1000 grados Fahrenheit .

Los astrónomos han trazado las temperaturas en diferentes capas de la atmósfera del planeta y rastreado la cantidad y distribución del vapor de agua. Los resultados tienen implicaciones para la comprensión de la dinámica atmosférica y cómo se forman los planetas gigantes como Júpiter.

"Estas medidas han abierto la puerta a un nuevo tipo de maneras de comparar las propiedades de los diferentes tipos de planetas", dijo el líder del equipo de Jacob haba de la Universidad de Chicago.

Descubierta por primera vez en 2011, WASP-43b se halla a 260 años luz de distancia. El planeta está demasiado lejos para ser fotografiado, pero debido a que su órbita se observa de canto a la Tierra, los astrónomos detectaron que observando caídas regulares a la luz de su estrella cuando el planeta pasa frente a ella.................


Temperature map of the "hot Jupiter" class exoplanet WASP 43b
This is a temperature map of the "hot Jupiter" class exoplanet WASP 43b. The white-colored region on the daytime side is 2,800 degrees Fahrenheit. The nighttime side temperatures drop to under 1,000 degrees Fahrenheit.
Image Credit: NASA/ESA
A team of scientists using NASA’s Hubble Space Telescope has made the most detailed global map yet of the glow from a turbulent planet outside our solar system, revealing its secrets of air temperatures and water vapor.
Hubble observations show the exoplanet, called WASP-43b, is no place to call home. It is a world of extremes, where seething winds howl at the speed of sound from a 3,000-degree-Fahrenheit “day” side, hot enough to melt steel, to a pitch-black “night” side with plunging temperatures below 1,000 degrees Fahrenheit.
Astronomers have mapped the temperatures at different layers of the planet's atmosphere and traced the amount and distribution of water vapor. The findings have ramifications for the understanding of atmospheric dynamics and how giant planets like Jupiter are formed.
“These measurements have opened the door for a new kinds of ways to compare the properties of different types of planets,” said team leader Jacob Bean of the University of Chicago.
First discovered in 2011, WASP-43b is located 260 light-years away. The planet is too distant to be photographed, but because its orbit is observed edge-on to Earth, astronomers detected it by observing regular dips in the light of its parent star as the planet passes in front of it.
“Our observations are the first of their kind in terms of providing a two-dimensional map on the longitude and altitude of the planet’s thermal structure that can be used to constrain atmospheric circulation and dynamical models for hot exoplanets,” said team member Kevin Stevenson of the University of Chicago.
As a hot ball of predominantly hydrogen gas, there are no surface features on the planet, such as oceans or continents that can be used to track its rotation. Only the severe temperature difference between the day and night sides can be used by a remote observer to mark the passage of a day on this world.
The planet is about the same size as Jupiter, but is nearly twice as dense. The planet is so close to its orange dwarf host star that it completes an orbit in just 19 hours. The planet also is gravitationally locked so that it keeps one hemisphere facing the star, just as our moon keeps one face toward Earth.
This was the first time astronomers were able to observe three complete rotations of any planet, which occurred during a span of four days. Scientists combined two previous methods of analyzing exoplanets in an unprecedented technique to study the atmosphere of WASP-43b. They used spectroscopy, dividing the planet’s light into its component colors, to determine the amount of water and the temperatures of the atmosphere. By observing the planet’s rotation, the astronomers also were able to precisely measure how the water is distributed at different longitudes.
Because there is no planet with these tortured conditions in our solar system, characterizing the atmosphere of such a bizarre world provides a unique laboratory for better understanding planet formation and planetary physics.
“The planet is so hot that all the water in its atmosphere is vaporized, rather than condensed into icy clouds like on Jupiter,” said team member Laura Kreidberg of the University of Chicago.
The amount of water in the giant planets of our solar system is poorly known because water that has precipitated out of the upper atmospheres of cool gas giant planets like Jupiter is locked away as ice. But so-called “hot Jupiters,” gas giants that have high surface temperatures because they orbit very close to their stars, water is in a vapor that can be readily traced.
“Water is thought to play an important role in the formation of giant planets, since comet-like bodies bombard young planets, delivering most of the water and other molecules that we can observe,” said Jonathan Fortney, a member of the team from the University of California, Santa Cruz.
In order to understand how giant planets form astronomers want to know how enriched they are in different elements. The team found that WASP-43b has about the same amount of water as we would expect for an object with the same chemical composition as our sun, shedding light on the fundamentals about how the planet formed. The team next aims to make water-abundance measurements for different planets.
The results are presented in two new papers, one published online in Science Express Thursday and the other published in The Astrophysical Journal Letters on Sept. 12.
The Hubble Space Telescope is a project of international cooperation between NASA and the European Space Agency. NASA's Goddard Space Flight Center in Greenbelt, Maryland manages the telescope. The Space Telescope Science Institute (STScI) in Baltimore conducts Hubble science operations. STScI is operated for NASA by the Association of Universities for Research in Astronomy, Inc., in Washington.
For images and more information about Hubble, visit:
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Guillermo Gonzalo Sánchez Achutegui
Incsríbete en el Foro del blog y participa : A Vuelo De Un Quinde - El Foro!

domingo, 21 de septiembre de 2014

NASA : Hubble Helps Find Smallest Known Galaxy Containing a Supermassive Black Hole


Artist's View of M60-UCD1 Black Hole
Artist's View of M60-UCD1 Black Hole
Image Credit: 
NASA, ESA, STScI-PRC14-41a
 
Astronomers using data from NASA’s Hubble Space Telescope and ground observation have found an unlikely object in an improbable place -- a monster black hole lurking inside one of the tiniest galaxies ever known.

The black hole is five times the mass of the one at the center of our Milky Way galaxy. It is inside one of the densest galaxies known to date -- the M60-UCD1 dwarf galaxy that crams 140 million stars within a diameter of about 300 light-years, which is only 1/500th of our galaxy’s diameter.
If you lived inside this dwarf galaxy, the night sky would dazzle with at least 1 million stars visible to the naked eye. Our nighttime sky as seen from Earth’s surface shows 4,000 stars.
The finding implies there are many other compact galaxies in the universe that contain supermassive black holes. The observation also suggests dwarf galaxies may actually be the stripped remnants of larger galaxies that were torn apart during collisions with other galaxies rather than small islands of stars born in isolation.
“We don’t know of any other way you could make a black hole so big in an object this small,” said University of Utah astronomer Anil Seth, lead author of an international study of the dwarf galaxy published in Thursday’s issue of the journal Nature.
Seth’s team of astronomers used the Hubble Space Telescope and the Gemini North 8-meter optical and infrared telescope on Hawaii’s Mauna Kea to observe M60-UCD1 and measure the black hole’s mass. The sharp Hubble images provide information about the galaxy’s diameter and stellar density. Gemini measures the stellar motions as affected by the black hole’s pull. These data are used to calculate the mass of the black hole.
Black holes are gravitationally collapsed, ultra-compact objects that have a gravitational pull so strong that even light cannot escape. Supermassive black holes -- those with the mass of at least one million stars like our sun -- are thought to be at the centers of many galaxies.
The black hole at the center of our Milky Way galaxy has the mass of four million suns. As heavy as that is, it is less than 0.01 percent of the Milky Way’s total mass. By comparison, the supermassive black hole at the center of M60-UCD1, which has the mass of 21 million suns, is a stunning 15 percent of the small galaxy’s total mass.
“That is pretty amazing, given that the Milky Way is 500 times larger and more than 1,000 times heavier than the dwarf galaxy M60-UCD1,” Seth said.
One explanation is that M60-UCD1 was once a large galaxy containing 10 billion stars, but then it passed very close to the center of an even larger galaxy, M60, and in that process all the stars and dark matter in the outer part of the galaxy were torn away and became part of M60.
The team believes that M60-UCD1 may eventually be pulled to fully merge with M60, which has its own monster black hole that weighs a whopping 4.5 billion solar masses, or more than 1,000 times bigger than the black hole in our galaxy. When that happens, the black holes in both galaxies also likely will merge. Both galaxies are 50 million light-years away.
The Hubble Space Telescope is a project of international cooperation between NASA and the European Space Agency. NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the telescope. The Space Telescope Science Institute (STScI) in Baltimore conducts Hubble science operations. STScI is operated for NASA by the Association of Universities for Research in Astronomy, Inc., in Washington.
For images and more information about Hubble, visit:
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Guillermo Gonzalo Sánchez Achutegui
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martes, 9 de septiembre de 2014

NASA : Hubble Finds Supernova Companion Star after Two Decades of Searching


This is an artist’s impression of supernova 1993J, which exploded in the galaxy M81.
This is an artist’s impression of supernova 1993J, which exploded in the galaxy M81. Using the Hubble Space Telescope, astronomers have identified the blue helium-burning companion star, seen at the center of the expanding nebula of debris from the supernova.
Image Credit: 
NASA, ESA, G. Bacon (STScI)
 
Using NASA’s Hubble Space Telescope, astronomers have discovered a companion star to a rare type of supernova. The discovery confirms a long-held theory that the supernova, dubbed SN 1993J, occurred inside what is called a binary system, where two interacting stars caused a cosmic explosion.
"This is like a crime scene, and we finally identified the robber," said Alex Filippenko, professor of astronomy at University of California (UC) at Berkeley. "The companion star stole a bunch of hydrogen before the primary star exploded."
SN 1993J is an example of a Type IIb supernova, unusual stellar explosions that contains much less hydrogen than found in a typical supernova.  Astronomers believe the companion star took most of the hydrogen surrounding the exploding main star and continued to burn as a super-hot helium star.
“A binary system is likely required to lose the majority of the primary star’s hydrogen envelope prior to the explosion. The problem is that, to date, direct observations of the predicted binary companion star have been difficult to obtain since it is so faint relative to the supernova itself,” said lead researcher Ori Fox of UC Berkeley.
SN 1993J resides in the Messier 81 galaxy, about 11 million light-years away in the direction of Ursa Major, the Great Bear constellation. Since its discovery 21 years ago, scientists have been looking for the companion star. Observations at the W. M. Keck Observatory on Mauna Kea, Hawaii, suggested that the missing companion star radiated large amounts of ultraviolet (UV) light, but the area of the supernova was so crowded that scientists could not be sure they were measuring the right star.
The team combined optical light data and Hubble’s UV light images to construct a spectrum that matched the predicted glow of a companion star, also known as the continuum emission. Scientists were only recently able to directly detect this light.
“We were able to get that UV spectrum with Hubble. This conclusively shows that you have an excess of continuum emission in the UV, even after the light from other stars has been subtracted,” said Azalee Bostroem of the Space Telescope Science Institute (STScI) in Baltimore, Maryland.
Astronomers estimate a supernova occurs once every second somewhere in the universe, yet they don’t fully understand how stars explode. Further research will help astronomers better understand the properties of this companion star and the different types of supernovae.
The results of this study were published in the July 20 issue of the Astrophysical Journal.
The Hubble Space Telescope is a project of international cooperation between NASA and the European Space Agency. NASA's Goddard Space Flight Center in Greenbelt, Maryland, manages the telescope, while STScI conducts science operations. STScI is operated for NASA by the Association of Universities for Research in Astronomy, Inc., in Washington.
For images and more information about Hubble, visit:
NASA
Guillermo Gonzalo Sánchez Achutegui
Inscríbete en el Foro del blog y participa : A Vuelo De Un Quinde - El Foro!

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