Mostrando entradas con la etiqueta Black Holes. Mostrar todas las entradas
Mostrando entradas con la etiqueta Black Holes. Mostrar todas las entradas

sábado, 20 de agosto de 2016

NASA : A Black Hole Story Told by a Cosmic Blob and Bubble .- La historia de un Agujero Negro contada a traves de una burbuja cósmica....

http://www.nasa.gov/mission_pages/chandra/a-black-hole-story-told-by-a-cosmic-blob-and-bubble.html

Galaxy IC 2497 and the Green Blob, a renowned cosmic structure also called “Hanny’s Voorwerp” (Dutch for “Hanny’s object”).
Two cosmic structures show evidence for a remarkable change in behavior of a supermassive black hole in a distant galaxy. Using data from NASA’s Chandra X-ray Observatory and other telescopes, astronomers are piecing together clues from a cosmic “blob” and a gas bubble that could be a new way to probe the past activity of a giant black hole and its effect on its host galaxy.

The Green Blob, a renowned cosmic structure also called “Hanny’s Voorwerp” (which means “Hanny’s object” in Dutch), is located about 650 million light years from Earth. This object was discovered in 2007 by Hanny van Arkel, at the time a school teacher, as part of the citizen science project called Galaxy Zoo.

Astronomers think that a blast of ultraviolet and X-radiation produced by a supermassive black hole at the center of the galaxy IC 2497 (only 200,000 light years away) excited the oxygen atoms in a gas cloud, giving the Green Blob its emerald glow. At present the black hole is growing slowly and not producing nearly enough radiation to cause such a glow.

However, the distance of the Green Blob from IC 2497 is large enough that we may be observing a delayed response, or an echo of past activity, from a rapidly growing black hole. Such a black hole would produce copious amounts of radiation from infalling material, categorizing it as a “quasar.”

If the black hole was growing at a much higher rate in the past and then slowed down dramatically in the past 200,000 years, the glow of the Green Blob could be consistent with the present low activity of the black hole. In this scenario, the blob would become much dimmer in the distant future, as reduced ultraviolet and X-radiation levels from the faded quasar finally reach the cloud.

In this new composite image of IC 2497 (top object) and the Green Blob (bottom), X-rays from Chandra are purple and optical data from the Hubble Space Telescope are red, green, and blue.

New observations with Chandra show that the black hole is still producing large amounts of energy even though it is no longer generating intense radiation as a quasar. The evidence for this change in the black hole’s activity comes from hot gas in the center of IC 2497 detected in a long exposure by Chandra. The center of the X-ray emission shows cooler gas, which astronomers interpret as a large bubble in the gas.

Astronomers suspect this bubble may have been created when a pair of jets from the black hole blew away the hot gas. In this scenario, the energy produced by the supermassive black hole has changed from that of a quasar, when energy is radiated in a broad beam, to more concentrated output in the form of collimated jets of particles and consistent with the observed radio emission in this source.

Such changes in behavior from strong radiation to strong outflow are seen in stellar-mass black holes that weigh about ten times that of the Sun, taking place over only a few weeks. The much higher mass of the black hole in IC 2497 results in much slower changes over many thousands of years.

The citizen and professional scientists of the Galaxy Zoo project have continued to hunt for objects like the Green Blob. Many smaller versions of the Green Blob have been found (dubbed “Voorwerpjes” or “little objects” in Dutch.) These latest results from Chandra suggest that fading quasars identified as Voorwerpjes are good places to search for examples of supermassive black holes affecting their surroundings.

A paper on these results recently appeared in Monthly Notices of the Royal Astronomical Society and is available online. The authors of the paper are Lia Sartori (ETH Zurich), Kevin Schawinski (ETH Zurich), Michael Koss (ETH Zurich), Ezequiel Treister (University of Concepcion, Chile), Peter Maksym (Harvard-Smithsonian Center for Astrophysics), William Keel (University of Alabama, Tuscaloosa), C. Megan Urry (Yale University), Chris Lintott (Oxford University), and O. Ivy Wong (University of Western Australia).

NASA’s Marshall Space Flight Center in Huntsville, Alabama, manages the Chandra program for NASA’s Science Mission Directorate in Washington. The Smithsonian Astrophysical Observatory in Cambridge, Massachusetts, controls Chandra’s science and flight operations.
Image Credit: X-ray: NASA/CXC/ETH Zurich/L. Sartori et al, Optical: NASA/STScI
For more Chandra images, multimedia and related materials, visit:
Last Updated: Aug. 10, 2016
Editor: Lee Mohon
NASA
Guillermo Gonzalo Sánchez Achutegui

jueves, 14 de enero de 2016

NASA : Hubble Sees a Supermassive and Super-hungry Galaxy .- Telescopio Espacial Hubble ve una galaxia Supermassive y Super-hambre

Hola amigos: A VUELO DE UN QUINDE EL BLOG., Esta imagen del telescopio espacial de la NASA / ESA Hubble muestra la galaxia espiral NGC 4845, que se encuentra más de 65 millones de años-luz de distancia en la constelación de Virgo (La Virgen). La orientación de la galaxia revela claramente sorprendente estructura espiral de la galaxia: un disco plano y sin polvo que rodea a una abigarrada bulbo galáctico brillante.
Centro brillante de NGC 4845 alberga una versión gigantesca de un agujero negro, conocido como un agujero negro supermasivo. La presencia de un agujero negro en una galaxia lejana como NGC 4845 se puede deducir de su efecto en las estrellas más internas de la galaxia; estas estrellas experimentan una fuerte atracción gravitatoria del agujero negro y el genio de alrededor del centro de la galaxia mucho más rápido que lo contrario.
More information.....
 

Image of spiral galaxy NGC 4845, a flat and dust-mottled disk surrounding a bright galactic bulge.
This NASA/ESA Hubble Space Telescope image shows the spiral galaxy NGC 4845, located over 65 million light-years away in the constellation of Virgo (The Virgin). The galaxy’s orientation clearly reveals the galaxy’s striking spiral structure: a flat and dust-mottled disk surrounding a bright galactic bulge.

NGC 4845’s glowing center hosts a gigantic version of a black hole, known as a supermassive black hole. The presence of a black hole in a distant galaxy like NGC 4845 can be inferred from its effect on the galaxy’s innermost stars; these stars experience a strong gravitational pull from the black hole and whizz around the galaxy’s center much faster than otherwise.

From investigating the motion of these central stars, astronomers can estimate the mass of the central black hole — for NGC 4845 this is estimated to be hundreds of thousands times heavier than the sun. This same technique was also used to discover the supermassive black hole at the center of our own Milky Way — Sagittarius A* — which hits some four million times the mass of the sun.

The galactic core of NGC 4845 is not just supermassive, but also super-hungry. In 2013 researchers were observing another galaxy when they noticed a violent flare at the center of NGC 4845. The flare came from the central black hole tearing up and feeding off an object many times more massive than Jupiter. A brown dwarf or a large planet simply strayed too close and was devoured by the hungry core of NGC 4845.

Image credit: ESA/Hubble & NASA and S. Smartt (Queen's University Belfast)
Text credit: European Space Agency

Last Updated: Jan. 8, 2016
Editor: Ashley Morrow
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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domingo, 29 de noviembre de 2015

NASA : A Precocious Black Hole .- Un precioso Agujero negro en al Galaxia CID-947..............

Hola amigos: A VUELO DE UN QUINDE EL BLOG., En julio de 2015, los investigadores anunciaron el descubrimiento de un agujero negro, que se muestra en la ilustración anterior, que creció mucho más rápidamente que su galaxia anfitriona. El descubrimiento pone en cuestión los supuestos anteriores sobre el desarrollo de las galaxias. El agujero negro fue descubierto originalmente usando el Telescopio Espacial Hubble de la NASA, y luego se detectó en el Sloan Digital Sky Survey y por XMM-Newton de la ESA y el Observatorio de Rayos X Chandra de la NASA.
More information..............

Illustration of supermassive black hole at center of normal sized galaxy
In July 2015, researchers announced the discovery of a black hole, shown in the above illustration, that grew much more quickly than its host galaxy. The discovery calls into question previous assumptions on the development of galaxies. The black hole was originally discovered using NASA's Hubble Space Telescope, and was then detected in the Sloan Digital Sky Survey and by ESA's XMM-Newton and NASA's Chandra X-ray Observatory.
 
Benny Trakhtenbrot, from ETH Zurich's Institute for Astronomy, and an international team of astrophysicists, performed a follow-up observation of this black hole using the 10 meter Keck telescope in Hawaii and were surprised by the results. The data, collected with a new instrument, revealed a giant black hole in an otherwise normal, distant galaxy, called CID-947.
Illustration Credit: M. Helfenbein, Yale University / OPAC
Last Updated: Nov. 27, 2015
Editor: Sarah Loff
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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