Mostrando entradas con la etiqueta NASA's Kepler Mission Team. Mostrar todas las entradas
Mostrando entradas con la etiqueta NASA's Kepler Mission Team. Mostrar todas las entradas

domingo, 13 de marzo de 2016

NASA : Mission Manager Update: K2 continues to shine .- Gestor de actualizaciones Misión: K2 sigue brillando

Hola amigos : A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Agencia Espacial NASA, sobre las investigaciones que está logrando al misión de Kepler 2;  NASA , nos dice: Pues bien, la búsqueda de los datos de Kepler ha continuado y ahora está en la recta final. En julio pasado anunciamos Kepler-452b, un planeta más años mayor que la Tierra, pero que orbita alrededor de una estrella muy similar a nuestro sol y que ha gastado miles de millones de años en su zona habitable. Kepler-452b se une al grupo muy interesante y cada vez mayor de exoplanetas-tamaño de la Tierra cerca - planetas que orbitan otros soles - que son menos del doble del tamaño de la Tierra y que residen en la zona habitable de su sol, que es la distancia de la estrella donde el agua líquida podría reunir en la superficie.
More information....
http://www.nasa.gov/feature/ames/kepler/mission-manager-update-k2-continues-to-shine

Artist's concept of K2-3

Mission Manager Update: K2 continues to shine

It’s been nine months since my last report, so what has the mission been up to?

Well, the search of the Kepler data has continued and is now in the home stretch. Last July we announced Kepler-452b, an older, larger planet than Earth, but one that orbits a star very much like our sun and has spent billions of years in its habitable zone. Kepler-452b joins the very interesting and growing group of near-Earth-size exoplanets – planets that orbit other suns – that are less than twice the size of Earth and reside in their sun's habitable zone which is the distance from the star where liquid water might pool on the surface.

Also in July, we released our second-to-last exoplanet catalog, increasing the total number of candidates to more than 4,600, and added 12 small potentially rocky candidates in the habitable zone. This penultimate catalog was also noteworthy for being our first fully automated catalog, turning over the task of vetting potential exoplanets to software. Because it is so much faster, it means that for the first time, we were able to go back and reassess all the data from the mission, and to do so uniformly. And now we’re on the last lap, doing our final evaluation of the data to deliver the final mission catalog, which is anticipated early next year. Of course, the list of exoplanets will continue to grow as other observers and other missions take the baton and continue to expand the frontier.

To that end, our new K2 mission has been a smashing success! The spacecraft has operated beautifully, with scarcely a whiff of trouble. As part of our K2 mission strategy, we’ve relaxed the fault or sensitivity limits and taken on a bit more risk so that we wouldn’t have to interrupt the observing to correct minor issues. In response, the spacecraft appears to have rewarded our trust by operating more smoothly than it has at any other time in its history. As a result, the ground crew has had time to look for additional improvements. Since we began the K2 mission, we have improved the pointing, increased the duration of observations and increased the number of targets observed – all while spending less fuel than we expected. We now project that the spacecraft may have enough fuel to operate for nearly another three years!

Now we are preparing to embark on a new experiment, turning the spacecraft around and pointing the telescope in the forward velocity vector, where, instead of looking towards where it’s been, it will look in the direction of where it’s going. This special maneuver has the detriment of letting the Earth move through its field of view and putting a lot of light into the telescope, but it will let us look near the central bulge of our galaxy while ground-based observatories do the same thing, at the same instant. This unique coordinated observing lets astronomers look for exoplanets and other dark bodies by taking advantage of their ability to act as a gravitational lens, focusing the light of a background star and temporarily causing that star to brighten. This approach has been successfully used to detect exoplanets from the ground, but doing it simultaneously from the ground and a spacecraft fifty million miles from Earth will allow astronomers to determine the distance to these bodies using parallax – the effect whereby the position or direction of an object appears to differ when viewed from a different position. Calculations around this process can reveal the mass of found exoplanets. This special microlensing observing period or campaign will begin in April and end in July. During this time telescopes around the world will focus on a specific patch of sky in a joint effort to demonstrate the power of this technique, which will also be used by NASA’s Wide Field Infrared Survey Telescope, or WFIRST mission, planned to launch in the mid-2020s.

Meanwhile, the K2 mission, with its superb photometry applied to the ecliptic – the orbital path traveled around the sun by the planets of our solar system and the location of the zodiac – is opening the door to new scientific discoveries. In November, the Las Cumbres Observatory Global Telescope Network hosted a K2 science conference attended by nearly 200 scientists from around the world. Presentations described the science being conducted with K2 data from exoplanets to stellar physics to supernovae and black holes. We are seeing an explosion of scientific interest in the K2 mission, with a new generation of researchers coming to the forefront. Already K2 is starting to make a significant contribution to the number of exoplanets known, and is finding them closer to home than those discovered by Kepler, and around brighter stars that provide enough light to make them candidates for probing their atmospheres. The promise of the mission is extensive.

With the fuel savings achieved, the K2 mission has been invited to propose for a mission extension through the process of NASA’s astrophysics division’s senior review of operating missions.

To give a sense of the improvements that have been made since the start of the K2 mission, consider that we initially hoped to observe 10,000 target stars in each campaign, and we are now averaging nearly 30,000. And that we have balanced the spacecraft against the solar pressure so well that we can see a change in it's pointing when transmitting data from its back-up antenna. Just think about that for a moment. This spacecraft, as big and heavy as an SUV, turns slightly just because we change the broadcasting antenna! This is like having your car begin to turn because of the blinking of your turn signal!

Finally, since my last report, we marked the retirement of the Kepler principal investigator, William Borucki, for whom we have so much to thank, and celebrated the 20th anniversary of the discovery of the first exoplanet. We have come a long way in the last 20 years, and with Kepler’s success we are riding the K2 mission into new territory. 


Regards,
Charlie Sobeck​
Kepler and K2 mission manager
NASA's Ames Research Center
Last Updated: March 11, 2016
Editor: Michele Johnson
NASA
Guillermo Gonzalo Sánchez Achutegui
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viernes, 3 de abril de 2015

NASA : Kepler Wins National Air and Space Museum Trophy .- Kepler gana el National Air and Space Museum Trophy

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido la información de la Agencia Espacial NASA, que el  equipo encargado de la misión NASA's Kepler misión, el responsable de la primera detección de la historia de los planetas tamaño de la Tierra que orbitan otros soles en su templado "zona habitable", recibirá el honor del más the Smithsonian National Air and Space Museum's highest group;   en una ceremonia en Washington el 25 de marzo . Kepler recibirá el 2015 Trofeo para el Aprovechamiento actual, que honra a los esfuerzos sobresalientes en los campos de la ciencia y la tecnología aeroespacial
Gen. John "Jack" R. Dailey (front right), director of the Museum, presents the 2015 Current Achievement Trophy Award to William
General John "Jack" R. Dailey (front right), director of the National Air and Space Museum, presents the 2015 Current Achievement Trophy Award to William Borucki (front left) and NASA's Kepler Mission Team.
Image Credit: 
NASM
 The team in charge of NASA's Kepler mission, responsible for history's first detection of Earth-sized planets orbiting other suns in their temperate "habitable zone," will receive the Smithsonian National Air and Space Museum's highest group honor at a ceremony in Washington on March 25. Kepler will receive the 2015 Trophy for Current Achievement, which honors outstanding endeavors in the fields of aerospace science and technology.
 
Since its launch in March 2009, the Kepler mission has detected more than 4,000 candidate planets in orbit around other stars, or exoplanets for short. More than 1,000 of those exoplanet candidates have since been confirmed. These discoveries have revolutionized humanity’s view of Earth’s place in the universe by unveiling a whole new side of our Milky Way galaxy -- one that is teeming with planets.
 
As a result of Kepler’s discoveries, scientists are confident that most stars have planets and that Earth’s galaxy may host tens of billions of Earth-sized planets that reside in a distant star's “habitable zone,” the region around a star where liquid water might exist on the surface of an orbiting planet. The Kepler mission is also establishing a foundation for future studies of exoplanet atmospheres that could eventually answer the question of whether or not we are alone in the universe.
The Kepler space telescope infers the existence of an exoplanet, by measuring the amount of starlight blocked when it passes or transits in front of its parent star. From these data, a planet's size in radius, orbital period in Earth years and the amount of heat energy received from the host star can be determined.
During its prime mission, Kepler simultaneously and continuously measured the brightness of more than 150,000 stars for four years, looking for the telltale dimming that would indicate the presence of an orbiting planet. In May 2014, Kepler began a new mission, K2, to observe a series of fields along the ecliptic plane, the orbital path of the Earth about the sun, where the familiar constellations of the zodiac lie. This new mission provides scientists with an opportunity to search for even more exoplanets, as well as new opportunities to observe notable star clusters, young and old stars, active galaxies and supernovae. The spacecraft continues to collect data in its new mission.
For a full listing of previous awardees, along with a video about Kepler's award, visit: http://airandspace.si.edu/events/trophy.
NASA's Ames Research Center in Moffett Field, California, manages the Kepler and K2 missions for NASA’s Science Mission Directorate. NASA's Jet Propulsion Laboratory in Pasadena, California, managed Kepler mission development. Ball Aerospace & Technologies Corp. operates the flight system with support from the Laboratory for Atmospheric and Space Physics at the University of Colorado in Boulder.
For more information about the Kepler mission, visit:
 
Youtube Override: 
Watch a video about NASA's Kepler mission.
Image Credit: 
Smithsonian's National Air and Space Museum
 

Media contact:
Michele Johnson
Ames Research Center, Moffett Field, Calif.
650-604-6982
michele.johnson@nasa.gov
NASA
Guillermo Gonzalo Sánchez Achutegui
ayabaca@gmail.com
ayabaca@hotmail.com
ayabaca@yahoo.com
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