Mostrando entradas con la etiqueta Habitable zone. Mostrar todas las entradas
Mostrando entradas con la etiqueta Habitable zone. 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
Inscríbete en el Foro del blog y participa : A Vuelo De Un Quinde - El Foro!

NASA : NASA's K2 mission: The Kepler Space Telescope's Second Chance to Shine.- misión de la NASA K2: la segunda oportunidad del telescopio espacial Kepler de brillar

Hola amigos: A VUELO DE UN QUINDE EL BLOG., hemos recibido información de la Agencia Espacial NASA, los trabajos que está haciendo al Telescopio Espacial Kepler en la investigación de detectar algún exoplaneta que reúna las características de La Tierra: que pueda tener vida, las investigadores espaciales tienen esperanzas que la Misión Kepker2.....
Los ingenieros apiñados en torno a una pantalla de telemetría, y el ambiente era tenso. Estaban viendo flujos de datos desde una nave espacial paralizado más de 50 millones de millas de distancia - tan lejos que incluso a la velocidad de la luz, se tardó casi nueve minutos para una señal viaje a la nave espacial y atrás.
La NASA, piensa que:
Los descubrimientos en rollo

Un poco más de dos años después del momento de tensión para los ingenieros de bolas, K2 ha cumplido su promesa con una amplitud de descubrimientos. Continuando con el legado exoplaneta-caza, K2 ha descubierto más de tres docenas de exoplanetas y con más de 250 candidatos en espera de confirmación. Un puñado de estos mundos son estrellas cercano a la Tierra y la órbita de tamaño que son brillantes y relativamente cercanas en comparación con los descubrimientos de Kepler, permitiendo a los científicos para llevar a cabo estudios de seguimiento. De hecho, estos exoplanetas son probables objetivos futuros para el telescopio espacial Hubble y el próximo telescopio espacial James Webb (JWST), con la posibilidad de estudiar las atmósferas de estos planetas en busca de firmas indicativos de la vida.
Mas información
More information.....
The engineers huddled around a telemetry screen, and the mood was tense. They were watching streams of data from a crippled spacecraft more than 50 million miles away – so far that even at the speed of light, it took nearly nine minutes for a signal to travel to the spacecraft and back.
k2_explained_25nov_story.jpg
Engineers developed an innovative way to stabilize and control the spacecraft. This technique of using the sun as the "third wheel" has Kepler searching for planets again, but also making discoveries on young stars to supernovae.
Credits: NASA Ames/W Stenzel
 
It was late August 2013, and the group of about five employees at Ball Aerospace in Boulder, Colorado, was waiting for NASA’s Kepler space telescope to reveal whether it would live or die. A severe malfunction had robbed the planet-hunting Kepler of its ability to stay pointed at a target without drifting off course.

The engineers had devised a remarkable solution: using the pressure of sunlight to stabilize the spacecraft so it could continue to do science. Now, there was nothing more they could do but wait for the spacecraft to reveal its fate.

“You’re not watching it unfold in real time,” said Dustin Putnam, Ball’s attitude control lead for Kepler. “You’re watching it as it unfolded a few minutes ago, because of the time the data takes to get back from the spacecraft.”

Finally, the team received the confirmation from the spacecraft they had been waiting for. The room broke out in cheers. The fix worked! Kepler, with a new lease on life, was given a new mission as K2. But the biggest surprise was yet to come. A space telescope with a distinguished history of discovering distant exoplanets – planets orbiting other stars – was about to outdo even itself, racking up hundreds more discoveries and helping to usher in entirely new opportunities in astrophysics research.

“Many of us believed that the spacecraft would be saved, but this was perhaps more blind faith than insight,” said Tom Barclay, senior research scientist and director of the Kepler and K2 guest observer office at NASA’s Ames Research Center in California's Silicon Valley. "The Ball team devised an ingenious solution allowing the Kepler space telescope to shine again."

The discoveries roll in
A little more than two years after the tense moment for the Ball engineers, K2 has delivered on its promise with a breadth of discoveries. Continuing the exoplanet-hunting legacy, K2 has discovered more than three dozen exoplanets and with more than 250 candidates awaiting confirmation. A handful of these worlds are near-Earth-sized and orbit stars that are bright and relatively nearby compared with Kepler discoveries, allowing scientists to perform follow-up studies. In fact, these exoplanets are likely future targets for the Hubble Space Telescope and the forthcoming James Webb Space Telescope (JWST), with the potential to study these planets’ atmospheres in search of signatures indicative of life.
 
K2 finds white dwarf devouring mini planet
In this artist’s conception, a tiny rocky object vaporizes as it orbits a white dwarf star. Astronomers have detected the first planetary object transiting a white dwarf using data from the K2 mission. Slowly the object will disintegrate, leaving a dusting of metals on the surface of the star.
Credits: CfA/Mark A. Garlick
K2 also has astronomers rethinking long-held planetary formation theory, and the commonly understood lonely "hot Jupiter" paradigm. The unexpected discovery of a star with a close-in Jupiter-sized planet sandwiched between two smaller companion planets now has theorists back at their computers reworking the models, and has sent astronomers back to their telescopes in search of other hot Jupiter companions.

“It remains a mystery how a giant planet can form far out and migrate inward leaving havoc in its wake and still have nearby planetary companions,” said Barclay.

Like its predecessor, K2 searches for planetary transits – the tiny, telltale dip in the brightness of a star as a planet crosses in front – and for the first time caught the rubble from a destroyed exoplanet transiting across the remains of a dead star known as a white dwarf. Exoplanets have long been thought to orbit these remnant stars, but not until K2 has the theory been confirmed.
K2 has fixed its gaze on regions of the sky with densely packed clusters of stars which has revealed the first transiting exoplanet in such an area, popularly known as the Hyades star cluster. Clusters are exciting places to find exoplanets because stars in a cluster all form around the same time, giving them all the same "born-on" date. This helps scientists understand the evolution of planetary systems.
 
Neptune in the K2 field of view
Seventy days worth of solar system observations from K2 are highlighted in this sped-up movie. Neptune, in a dance with its moons, demonstrates the solar system in action. Neptune appears on day 15, followed by its moon Triton, which looks small and faint. Keen-eyed observers can also spot Neptune's tiny moon Nereid at day 24.
Credits: NASA/Ames/SETI/J. Rowe
 
The repurposed spacecraft boasts discoveries beyond the realm of exoplanets. Mature stars – about the age of our sun and older – largely populated the original single Kepler field of view. In contrast, many K2 fields see stars still in the process of forming. In these early days, planets also are assembled and by looking at the timescales of star formation, scientists gain insight into how our own planet formed.

Studies of one star-forming region, called Upper Scorpius, compared the size of young stars observed by K2 with computational models. The result demonstrated fundamental imperfections in the models. While the reason for these discrepancies is still under debate, it likely shows that magnetic fields in stars do not arise as researchers expect.

Looking in the ecliptic – the orbital path traveled around the sun by the planets of our solar system and the location of the zodiac – K2 also is well equipped to observe small bodies within our own solar system such as comets, asteroids, dwarf planets, ice giants and moons. Last year, for instance, K2 observed Neptune in a dance with its two moons, Triton and Nereid. This was followed by observations of Pluto and Uranus.

“K2 can’t help but observe the dynamics of our planetary system, " said Barclay. "We all know that planets follow laws of motion but with K2 we can see it happen.”

These initial accomplishments have come in the first year and a half since K2 began in May 2014, and have been carried off without a hitch. The spacecraft continues to perform nominally.

Searching for far out worlds

In April, K2 will take part in a global experiment in exoplanet observation with a special observing period or campaign, Campaign 9. In this campaign, both K2 and astronomers at ground-based observatories on five continents will simultaneously monitor the same region of sky towards the center of our galaxy to search for small planets, such as the size of Earth, orbiting very far from their host star or, in some cases, orbiting no star at all.
For this experiment, scientists will use gravitational microlensing – the phenomenon that occurs when the gravity of a foreground object, such as a planet, focuses and magnifies the light from a distant background star. This detection method will allow scientists to find and determine the mass of planets that orbit at great distances, like Jupiter and Neptune do our sun.
 
Knicole Colon at K2 SciCon
At the first K2 Science Conference in Nov. 2015, nearly 200 scientists from around the world convened to discuss their research using K2 data. Knicole Colon, K2 support scientist, walks through the K2 observing opportunities available to the science community. To date, nearly 800 scientists have authored more than 100 scientific papers using K2 data.
Credits: Michele Johnson/NASA Ames
 
Design by community
What could turn out to be one of the most important legacies of K2 has little to do with the mechanics of the telescope, now operating on two wheels and with an assist from the sun.
The Kepler mission was organized along traditional lines of scientific discovery: a targeted set of objectives carefully chosen by the science team to answer a specific question on behalf of NASA – how common or rare are "Earths" around other suns?

K2’s modified mission involves a whole new approach-- engaging the scientific community at large and opening up the spacecraft's capabilities to a broader audience.

"The new approach of letting the community decide the most compelling science targets we’re going to look at has been one of the most exciting aspects," said Steve Howell, the Kepler and K2 project scientist at Ames. "Because of that, the breadth of our science is vast, including star clusters, young stars, supernovae, white dwarfs, very bright stars, active galaxies and, of course, exoplanets.”

In the new paradigm, the K2 team laid out some broad scientific objectives for the mission and planned to operate the spacecraft on behalf of the community. 

Kepler’s field of view surveyed just one patch of sky in the northern hemisphere. The K2 ecliptic field of view provides greater opportunities for Earth-based observatories in both the northern and southern hemispheres, allowing the whole world to participate.

With more than two years of fuel remaining, the spacecraft’s scientific future continues to look unexpectedly bright.

Ames 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 Corporation 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 and K2 missions, visit:


Authored by Michele Johnson and H. Pat Brennan/JPL


Media contact: 

Michele Johnson
Ames Research Center, Moffett Field, Calif.
650-604-6982
michele.johnson@nasa.gov
Last Updated: March 9, 2016
Editor: Michele Johnson
NASA
Guillermo Gonzalo Sánchez Achutegui

domingo, 21 de julio de 2013

NASA - In the Zone: How Scientists Search for Habitable Planets


This artist's concept shows a Super Venus planet on the left, and a Super Earth on the right. Image credit: NASA/JPL-Caltech/Ames

There is only one planet we know of, so far, that is drenched with life. That planet is Earth, as you may have guessed, and it has all the right conditions for critters to thrive on its surface. Do other planets beyond our solar system, called exoplanets, also host life forms?

Astronomers still don't know the answer, but they search for potentially habitable planets using a handful of criteria. Ideally, they want to find planets just like Earth, since we know without a doubt that life took root here. The hunt is on for planets about the size of Earth that orbit at just the right distance from their star – in a region termed the habitable zone.

NASA's Kepler mission is helping scientists in the quest to find these worlds, sometimes called Goldilocks planets after the fairy tale because they orbit where conditions are "just right" for life. Kepler and other telescopes have confirmed a handful so far, all of which are a bit larger than Earth -- the Super Earths. The search for Earth's twin, a habitable-zone planet as small as Earth, is ongoing.

An important part of this research is the continuing investigation into exactly where a star's habitable zone starts and stops.

The habitable zone is the belt around a star where temperatures are ideal for liquid water -- an essential ingredient for life as we know it -- to pool on a planet's surface. Earth lies within the habitable zone of our star, the sun. Beyond this zone, a planet would probably be too cold and frozen for life (though it's possible life could be buried underneath a moon's surface). A planet lying between a star and the habitable zone would likely be too hot and steamy.

That perfect Goldilocks planet within the zone wouldn't necessarily be home to any furry creatures. But it would have the potential for some type of life to abound, if even microbes.

In one new study, researchers based at NASA's Exoplanet Science Institute at the California Institute of Technology, in Pasadena, Calif., carefully analyzed the location of both a planet called Kepler-69c and its habitable zone. Their analysis shows that this planet, which is 1.7 times the size of Earth, lies just outside the inner edge of the zone, making it more of a Super Venus than a Super Earth, as previous estimates indicated.

"On the way to finding Earths, Kepler is telling us a lot about the frequency of Venus-like planets in our galaxy," said Stephen Kane, lead author of the new paper on Kepler-69c appearing in the Astrophysical Journal Letters.

To determine the location of a star’s habitable zone, one must first learn how much total radiation it emits. Stars more massive than our sun are hotter, and blaze with radiation, so their habitable zones are farther out. Similarly, stars that are smaller and cooler sport tighter belts of habitability than our sun. For example, the Super Earth planet called Kepler-62f, discovered by Kepler to orbit in the middle of a habitable zone around a cool star, orbits closer to its star than Earth. The planet takes just 267 days to complete an orbit, as compared to 365 days for Earth.

Knowing precisely how far away a habitable zone needs to be from a star also depends on chemistry. For example, molecules in a planet's atmosphere will absorb a certain amount of energy from starlight and radiate the rest back out. How much of this energy is trapped can mean the difference between a turquoise sea and erupting volcanoes.

Researchers led by Ravi kumar Kopparapu of Penn State University, University Park, Pa., used this type of chemical information to nudge the habitable zone out a bit farther than previously thought. The team's 2013 Astrophysical Journal study is the current gold standard in determining how a star's total radiation output relates to the location of its habitable zone. Kane and his colleagues used this information to fine-tune the boundaries of Kepler-69c's habitable zone, in addition to careful measurements of the star's total energy output and the orbit of the planet.

"Understanding the properties of the star is critical to determining planetary properties and calculating the extent of the habitable zone in that system," said Kane.

But before you purchase real estate in a habitable zone, keep in mind there are other factors that dictate whether a world develops lush greenery and beaches. Eruptions from the surfaces of stars called flares, for example, can wreak havoc on planets.

"There are a lot of unanswered questions about habitability," said Lucianne Walkowicz, a Kepler science team member based at Princeton University, N.J., who studies flaring stars. "If the planet gets zapped with radiation all the time by flares from its parent star, the surface might not be a very pleasant place to live. But on the other hand, if there's liquid water around, that makes a really good shield from high-energy radiation, so maybe life could thrive in the oceans."

Flares can also scrape off the atmospheres of planets, complicating the picture further. This is particularly true for the smaller, cooler stars, which tend to be more hyperactive than stars like our sun.

Ideally, astronomers would like to know more about the atmosphere of potentially habitable planets. That way they could look at the planet's molecular makeup for signs of runaway greenhouse gases that could indicate an inhospitable Venus-like planet. Or, future space telescopes might even be able to pick up signatures of oxygen, water, carbon dioxide and methane -- indicators that the planet might be somebody's home.

NASA's upcoming James Webb Space Telescope will bring us closer to this goal, by probing the atmospheres of planets, some of which may lie in habitable zones. The mission won't be able to examine the atmospheres of planets as small as Earth, so we'll have to wait for another future telescope to separate out the Venuses from the Earths.

NASA Ames manages Kepler's ground system development, mission operations and science data analysis. NASA's Jet Propulsion Laboratory in Pasadena, Calif., managed Kepler mission development. Ball Aerospace & Technologies Corp. in Boulder, Colo., developed the Kepler flight system and supports mission operations with JPL at the Laboratory for Atmospheric and Space Physics at the University of Colorado in Boulder. The Space Telescope Science Institute in Baltimore archives, hosts and distributes the Kepler science data. Kepler is NASA's 10th Discovery Mission and is funded by NASA's Science Mission Directorate at the agency's headquarters in Washington.

More information about the Kepler mission is at http://www.nasa.gov/kepler .

More information about exoplanets and NASA's planet-finding program is at http://planetquest.jpl.nasa.gov .




Whitney Clavin 818-354-4673
Jet Propulsion Laboratory, Pasadena, Calif.
whitney.clavin@jpl.nasa.gov
Michele Johnson 650-604-4789

Ames Research Center, Moffett Field, Calif. 

michele.johnson@nasa.gov








NASA

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    Astronomers have discovered an exoplanet orbiting the star closest to our own.
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  • 696966main_exoupclose_ratio_946-710
    October 15, 2012

    Fours to be reckoned with

    The discovery of planets continues to expand beyond the domain of professional astronomers. A joint effort of amateur astronomers and scientists has led to the first reported case of a planet orbiting a double star that, in turn, is orbited by a second distant pair of stars.
    › read more
  • Guyon_2012_hi-res-download_2
    October 11, 2012

    Guyon the genius

    JPL scientist Olivier Guyon has been named one of the 2012 MacArthur Fellows, a prestigious award popularly known as the “genius grant.”
    › read more
  • Pulsar_small
    September 28, 2012

    Electric evidence

    Scientists theorize that radiation-pummeled pulsar planets may be bathed in an "electromagnetic wake".
    › read more
  • Eso_-_the_planetary_system_in_gliese_581_(by)
    September 28, 2012

    Massive, but missing magnetism?

    A new study finds that "super-Earths" may lack a magnetic field, which could make them difficult places for life to survive.
    › read more
  • 687509main_pia15802-43_946-710
    September 14, 2012

    A buzz-worthy find

    NASA-funded astronomers have, for the first time, spotted planets orbiting sun-like stars in a crowded cluster of stars. The findings offer the best evidence yet that planets can sprout up in dense stellar environments.
    › read more
  • Hotcoldsystem-sm
    September 11, 2012

    Extreme life on eccentric exos?

    While the hunt continues for the elusive Earth-like 'blue dot,' astronomers have discovered a collection of odd exoplanets.
    › read more
  • One_day_moon_palomar_200
    September 06, 2012

    Earth-hunting, guerilla style

    Exoplanet hunter John Johnson is spearheading a grassroots effort to build a lean, mean, Earth-hunting telescope in the hills of Southern California.
    › read more
  • 681723main_kepler47_art_4x3_800-600
    August 28, 2012

    Binary buddies

    Kepler has found the first multiple-planet solar system orbiting a pair of stars, revealing a brand new kind of solar system.
    › read more
  • Wolszczanredgiantplanet
    August 27, 2012

    A ravenous red giant

    Astronomers have discovered evidence of a planet that's been consumed by its "red giant" star. This event could mirror the fate of planets like Earth when our sun expands into its red giant phase.
    › read more
  • Johnsontop
    August 08, 2012

    Where are the giants?

    A group of astronomers including John Johnson of Caltech has found that data from Kepler may show that Jupiter-size planets might not be as easy to come by as smaller, rocky worlds like Earth.
    › read more
  • Pia15802-full
    June 21, 2012

    Odd couple

    Astronomers have discovered a pair of neighboring planets with dissimilar densities orbiting very close to each other.
    › read more
  • Spitzerdisco
    May 08, 2012

    Alien light forms

    NASA's Spitzer Space Telescope has detected light emanating from a "super-Earth" planet beyond our solar system for the first time.
    › read more
  • Kepler
    April 04, 2012

    Exo-extension

    NASA's Kepler mission has been approved for extension through fiscal year 2016 based on a recommendation from the Agency’s Senior Review of its operating missions.
    › read more
  • Eso_planettop
    March 29, 2012

    Bounty of red dwarf worlds

    A new result from ESO’s HARPS planet finder shows that rocky planets not much bigger than Earth are very common in the habitable zones around faint red stars. The international team estimates that there are tens of billions of such planets in the Milky Way galaxy alone, and probably about one hundred in the Sun’s immediate neighbourhood.
    › read more
  • Hs-2012-13-a-large_web
    February 21, 2012

    NASA's Hubble reveals a new class of extrasolar planet

    Observations by NASA's Hubble Space Telescope have come up with a new class of planet, a waterworld enshrouded by a thick, steamy atmosphere. It's smaller than Uranus but larger than Earth.
    › read more
  • 120202-space-superearth-715a.grid-10x2
    February 02, 2012

    Huge, but habitable?

    A newly-discovered super-Earth in a triple-star system could potentially be an Earth-like planet.
    › read more
  • Pia15264-640
    January 26, 2012

    Eleven on deck

    Kepler discovers 26 planets in 11 new solar systems.
    › read more
  • Pia15257
    January 11, 2012

    Tiny trio

    Astronomers using data from NASA's Kepler mission have discovered the three smallest planets yet detected orbiting a star beyond our sun.
    › read more
  • Hs-2012-07-a-xlarge_web
    January 11, 2012

    Plenty of planets

    Our Milky Way galaxy contains, on average, a minimum of one planet for every star, according to a new statistical study.
    › read more
  • Kepler-img
    January 01, 2012

    Kepler's big year

    2011 showed NASA's Kepler mission finding its stride. 2012 could be even bigger.
    › read more
  • 611931main_kepler20e_full
    December 20, 2011

    Sisters in size

    NASA's Kepler mission has discovered the first Earth-size planets orbiting a sun-like star outside our solar system.
    › read more
  • Featureimage1%20copy
    December 05, 2011

    Kepler's in the zone

    NASA's Kepler mission has confirmed its first planet in the "habitable zone," the region around a star where liquid water could exist on a planet's surface. Kepler also has discovered more than 1,000 new planet candidates, nearly doubling its previously known count.
    › read more
  • Herschelprev1
    October 20, 2011

    Damp disk

    Using data from the Herschel Space Observatory, astronomers have detected for the first time cold water vapor enveloping a dusty disk around a young star.
    › read more
  • Featureimage3
    October 19, 2011

    Cosmic cradle captured

    Keck astronomers have captured the first direct image of a planet forming around its host star.
    › read more
  • 12569_twin_neptunes%20(1)
    July 14, 2011

    Ten in transit

    An international team, including Oxford University scientists, has discovered ten new planets. Amongst them is one orbiting a star perhaps only a few tens of million years old, twin Neptune-sized planets, and a rare Saturn-like world.
    › read more
  • Students
    May 27, 2011

    Students Build Planet-Hunting Miniature Satellite

    Exoplanet CubeSat set to hitch a ride into space in 2012.
    › read more
  • Freeplanet
    May 18, 2011

    Free-Floating Planets May be More Common Than Stars

    So-called 'rogue planets' could litter the galaxy.
    › read more
  • Story01
    May 10, 2011

    Astronomers unveil portrait of 'super-exotic super-Earth:' Densest known rocky planet

    An international team of astronomers today revealed details of a 'super-exotic' exoplanet that would make the planet Pandora in the movie Avatar pale in comparison.
    › read more
  • !upload
    April 07, 2011

    NASA Telescope Ferrets Out Planet-Hunting Targets

    Astronomers have come up with a new way of identifying close, faint stars with NASA's Galaxy Evolution Explorer satellite. The technique should help in the hunt for planets that lie beyond our solar system, because nearby, hard-to-see stars could very well be home to the easiest-to-see alien planets.
    › read more
  • !upload
    March 29, 2011

    NASA Announces 2011 Carl Sagan Fellows

    NASA has selected five potential discoverers as the recipients of the 2011 Carl Sagan Postdoctoral Fellowships, named after the late astronomer. The Carl Sagan Fellowship takes a theme-based approach, in which fellows will focus on compelling scientific questions, such as "Are there Earth-like planets orbiting other stars?"
    › read more
  • Whitedwarf
    March 28, 2011

    Winter thaws out with hot exoplanet news

    Kepler's big annoucement of over 1,000 exoplanet candidates in early February continues to reverberate in the astronomy world. Here are some other news stories that are heating things up in the realm of exoplanets.
    › read more
  • Kepleratari
    March 07, 2011

    Kepler changes the planetary scorecard

    Kepler's latest data release included the discovery of an exotic six-planet solar system and five Earth-size worlds, but the bigger story may be in the hundreds of new "candidate planets" that were announced.
    › read more
  • !upload
    February 17, 2011

    Direct Images of Disks Unravel Mystery of Planet Formation

    The fruits of the SEEDS (Strategic Explorations of Exoplanets and Disks with Subaru) Project, led by Motohide Tamura at NAOJ (National Astronomical Observatory of Japan), are accumulating.
    › read more
  • Stupendoussix-120-90
    February 02, 2011

    NASA's Kepler Spacecraft Discovers Extraordinary New Planetary System

    Scientists using NASA's Kepler, a space telescope, recently discovered six planets made of a mix of rock and gases orbiting a single sun-like star, known as Kepler-11, which is located approximately 2,000 light years from Earth.
    › read more
  • Fantasticfive-120-90
    February 02, 2011

    NASA Finds Earth-size Planet Candidates in the Habitable Zone

    Is our Milky Way galaxy home to other planets the size of Earth? Are Earth-sized planets common or rare? NASA scientists seeking answers to those questions recently revealed their discovery.
    › read more
  • Densedumbbell-120-90
    January 12, 2011

    NASA's Kepler Mission Discovers Its First Rocky Planet

    NASA's Kepler mission confirmed the discovery of its first rocky planet, named Kepler-10b. Measuring 1.4 times the size of Earth, it is the smallest planet ever discovered outside our solar system.
    › read more
  • Soinclined-120-90
    January 12, 2011

    Inclined Orbits Prevail in Exoplanetary Systems

    A research team led by astronomers from the University of Tokyo and the National Astronomical Observatory of Japan (NAOJ) has discovered that inclined orbits may be typical rather than rare for exoplanetary systems -- those outside of our solar system.
    › read more
  • 500
    January 02, 2011

    Planet count tops 500

    A big year for exoplanet exploration came to a fitting end in December when astronomers announced new exoplanet discoveries that brought the total number of known worlds outside our solar system to over 500.
    › read more
  • Colossalcarat-120-90
    December 08, 2010

    NASA's Spitzer Reveals First Carbon-Rich Planet

    Astronomers have discovered that a huge, searing-hot planet orbiting another star is loaded with an unusual amount of carbon. The planet, a gas giant named WASP-12b, is the first carbon-rich world ever observed. The discovery was made using NASA's Spitzer Space Telescope, along with previously published ground-based observations.
    › read more
  • Lbtibanner
    December 06, 2010

    Double vision: New instrument casts its eyes to the sky

    The Large Binocular Telescope Interferometer has taken its first images of the star Beta Peg in the constellation Pegasus -- an encouraging start for an instrument designed to probe the cosmic neighborhoods where Earth-like planets could exist.
    › read more
  • Sniffingsuperearths-120-90
    December 01, 2010

    NASA Aids in Characterizing Super-Earth Atmosphere

    A team of astronomers, including two NASA Sagan Fellows, has made the first characterizations of a super-Earth's atmosphere, by using a ground-based telescope.
    › read more
  • Exoplanetemigration-120-90
    November 18, 2010

    An exoplanet from another galaxy

    Over the last 15 years, astronomers have detected nearly 500 exoplanets orbiting ordinary stars in our cosmic neighborhood. Now, for the first time, astronomers have detected an exoplanet whose origin appears to lie outside our own galaxy.
    › read more
  • Clueshues-120-90
    November 02, 2010

    Using Planet Colors to Search for Alien Earths

    Earth is invitingly blue. Mars is angry red. Venus is brilliant white. Astronomers have learned that a planet's "true colors" can reveal important details.
    › read more
  • Trickortreat-120-90
    October 29, 2010

    Cosmic neighborhoods to avoid

    With new evidence suggesting that the galaxy could be full of habitable planets like ours, the universe may be a more friendly place than anyone might have imagined. However, not every planet is lucky enough to have the right conditions for life. Here are some examples of how things can go very wrong.
    › read more
  • Billionsbrethren-120-90
    October 28, 2010

    NASA Survey Suggests Earth-Sized Planets are Common

    Nearly one in four stars similar to the sun may host planets as small as Earth, according to a new study funded by NASA and the University of California.
    › read more
  • Gliesemappreview
    October 25, 2010

    Details of 'Earthlike' world will have to wait

    Just how similar to Earth is the newly discovered planet orbiting the star Gliese 581? Until astronomers can take a closer look with a space-based exoplanet mission, that answer is likely to remain a mystery, NASA experts said.
    › read more
  • Oddlyoffset-120-90
    October 19, 2010

    Astronomers Find Weird, Warm Spot on an Exoplanet

    Observations from NASA's Spitzer Space Telescope reveal a distant planet with a warm spot in the wrong place.
    › read more
  • Robertpeters-600
    December 04, 2008

    Planet Hunters: Angling for extraterrestrials and Earthlike worlds

    As an avid fly fisherman and geocaching enthusiast, Robert Peters is a natural hunter, which makes him the perfect person to work on technology to help find Earthlike planets.
    › read more
  • Seagerbig-600
    October 03, 2008

    Planet Hunters: On a quest for astronomy's holy grail

    It's fitting that Sara Seager is fascinated by stories of explorers visiting uncharted places. From her groundbreaking work on the detection of exoplanet atmospheres to her innovative theories about life on other worlds, Seager has been a pioneer in the vast and unknown world of exoplanet
    › read more
  • Cashmontage
    April 17, 2008

    Planet Hunters: Photographer to the stars

    Webster Cash's passion for space began when he saw his first planetarium show as a child. Now, as the principal investigator for one of NASA's future exoplanet mission proposals, Cash is on the cutting edge of ideas that could help change our perception of the universe.
    › read more
  • Akesonmontage
    December 17, 2007

    Planet Hunters: For Rachel Akeson, science is in the genes

    You could say that science runs in Rachel Akeson's family. The daughter of two scientists, she knew she was going to be an astronomer by the time she was a third-grader. Now, in addition to having her hands full with her own young children, Akeson is studying young stars as they develop their own planetary families.
    › read more
  • Drdavidimel-590
    July 18, 2007

    Planet Hunters: Putting together the big picture in planet-finding

    "I just do it for the pictures," laughs Dr. David Imel as he points to the myriad posters of stars and galaxies hanging from the walls in his office at Caltech. But the picture Imel wants to see most doesn't exist yet - a pale blue dot orbiting a distant star. Another Earth.
    › read more
  • Bethbiller-210
    February 05, 2007

    Planet Hunters: Finding beauty in the universe

    Beth A. Biller overcame her fear of math to pursue her career as a serious astronomer. Her research has helped produce some of the sharpest images of extrasolar worlds ever obtained.
    › read more
  • Traubtryptych
    October 11, 2006

    Planet Hunters: A conversation with Navigator Chief Scientist Wes Traub

    Where are the other Earths? Answering that question is just the first step in NASA's long-range quest to look for life around stars beyond our solar system, according to Dr. Wes Traub. And to answer it, he says, we have to go into space.
    › read more
  • Robert_ligon-202
    December 16, 2005

    Planet Hunters: Burning the midnight oil at 13,600 feet

    Robert Ligon is an engineer, not an astronaut. Nonetheless, his work takes place on an otherworldly landscape miles above the Earth, where the air is thin and clear. He is part of a team that is pushing the technology envelope to aid in NASA's search for new worlds.
    › read more
  • Ken_brown_art
    January 19, 2005

    Planet Hunters: Former athlete flexes new muscles for planet search

    JPL physicist Ken Brown aims high. Twice named All-American in track and field, he placed 12th in the 1992 U.S. Olympic Trails qualifier in high jump. Now, he has his sights set on even loftier goals - building an instrument to spot hard-to-see planets outside our solar system and inspiring students to join in the quest.
    › read more
  • Tyson_browse
    September 22, 2004

    Planet Hunters: A conversation with 'Origins' host Neil Tyson

    Neil deGrasse Tyson, one of the world's most popular lecturers on astronomy, talks about the PBS "Origins" series, public perceptions of science, and the childhood influences that led him to become a scientist and an ambassador to the cosmos.
    › read more
  • Marcy2a_art
    April 07, 2003

    Planet Hunters: Geoff Marcy predicts discovey of another 'Earth' within decade

    Astronomers have been discovering large planets around other stars by the dozen in recent years, but are there really any other places that look like Earth out there? In a recent interview, planet-hunter extraordinaire Geoff Marcy said the answer may be closer than you think.
    › read more
  • Dave_charbonneau_sm
    April 01, 2002

    Planet Hunters: A conversation with David Charbonneau

    The detection of small, Earth-like worlds outside our solar system may be closer than you think, according to Caltech's David Charbonneau.
    › read more
  • You are subscribed to Kepler Mission for NASA. This information has recently been updated, and is now available.
    07/02/2013 08:00 PM EDT

    Exploratory recovery commanding of Kepler’s reaction wheels will commence mid-to-late July.
    06/26/2013 08:00 PM EDT

    Astronomers have found two planets smaller than three times the size of Earth orbiting sun-like stars in a crowded stellar cluster approximately 3,000 light-years from Earth in the constellation Cygnus.
    06/06/2013 08:00 PM EDT

    The Kepler spacecraft remains in its Point Rest State (PRS) and is operating well in this mode.
Guillermo Gonzalo Sánchez Achutegui
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