Showing posts with label Planets and Stars. Show all posts
Showing posts with label Planets and Stars. Show all posts

Friday, 18 April 2014

Most Earth-Like Planet Yet, Discovered By Kepler Telescope

An artist's illustration of the new planet, Kepler-186f.
This artist's depiction shows Kepler-186f,
an Earth-size world in the "habitable zone" of a red dwarf star.
Red sunshine, seas, and maybe aliens? Scientists analyzing data from NASA's Kepler Space Telescope today report the closest thing yet to another Earth, a world in a habitable orbit around a red dwarf star some 493 light-years away.

Launched in 2009 with the goal of finding another Earth, the $600-million Kepler spacecraft has discovered more than 960 planets orbiting nearby stars. Half a dozen of those seem to be rocky, like Earth, and have orbits in the habitable zone around their star—but the newly discovered world, named Kepler-186f, is the closest in size to Earth.


"This is a first, validated Earth-size planet in the habitable zone of another star," says study lead author Elisa Quintana of the SETI Institute and NASA's Ames Research Center in Mountain View, California. The discovery of the planet was reported today in the journal Science and in a space agency press briefing. (Related: "Motherlode of Alien Worlds Revealed by Space Telescope.")
Interactive graphic of exoplanets.
See interactive: Hundreds of Exoplanets,
a Handful Right for Life
One of five planets orbiting a red dwarf star (called Kepler 186), Kepler-186f is 1.1 times wider than Earth. That means it's almost certainly a rocky planet too. The researchers estimate its mass is 1.5 times that of Earth's.
The new planet's orbit, meanwhile, places it at the "Goldilocks" distance from its star—not too hot or too cold for liquid water to exist on its surface. The origin of life on Earth required liquid water, notes study co-author Stephen Kane of San Francisco State University.
"This is an historic discovery—the first Earth-size planet found in the habitable zone around its star," says pioneering planet hunter Geoff Marcy of the University of California, Berkeley, who was not on the discovery team. "This is the best case for a habitable planet yet found."
The planet's red dwarf star is only about half as big as the sun, making it cooler and dimmer. But Kepler-186f is on a tighter orbit than Earth is, taking only 130 days to circle its star. Though it receives less warmth from its sun than Earth does from its own, the discovery team says, it would still be warm enough to prevent seas from freezing—provided it has an atmosphere that provides a substantial greenhouse effect.
"This planet basks in an orange-red glow from that star, much as we enjoy at sunset," Marcy says, by email. "The temperature on the planet is likely cool, similar to dawn or dusk on a spring day."
Crowded Claims
"Sounds like a great planet to visit, if we could figure out how to travel there," says MIT astronomer Sarah Seager, by email. But amid the excitement, she and planetary scientist Alan Boss, author of The Crowded Universe: The Search for Living Planets, caution that other discoveries have led to similar claims in recent years.
Since 1995, astronomers have detected nearly 1,700 worlds orbiting nearby stars, using a variety of detection methods. About a half dozen claims of bigger Earth-size (or still larger "super-Earth") planets orbiting in habitable zones around red dwarfs have been made in recent years, Boss says. "Still, it once again proves what Kepler can do."
The next closest thing to Kepler-186f has a width 1.4 times that of Earth, Quintana says. According to Seager, a planet whose diameter is less than 1.75 Earths is likely to be rocky.
The Kepler report looks particularly reliable because of the spacecraft's track record. It detects planets that dim the light from their stars as they pass in front of them. Such transits, Quintana says, are observable only in the roughly one percent of planetary systems whose orbits can be seen edge on from Earth.
When transits occur regularly, their frequency allows scientists to calculate the distance at which a planet is orbiting a star. The amount of starlight dimming—typically on the order of 0.1 percent—is a measure of the planet's size.
Such searches are most sensitive to closer-in stars, because fewer days of observations are required to see repeated transits. That explains why the newly discovered planet's four closer-in siblings had been spotted earlier by the space telescope. "They relied on only two years of data," Quintana says. With so many planets in the system, it's likely to be stable over billions of years.
Tickets on Hold
Whether a life-friendly atmosphere exists on Kepler-186f depends on a bevy of factors besides having the right orbit. "We see planets in our own solar system—Venus but also Mars—that are Earthlike but where things didn't work out," Kane says.
On Venus, a runaway greenhouse climate has cooked the surface to temperatures that would melt lead. On Mars, the lack of a strong magnetic field has allowed the solar wind to strip away much of the planet's atmosphere. A magnetic field would be particularly important for a planet orbiting a red dwarf, because such stars tend to release strong flares that would sterilize the planet.
"Just because a planet is in the habitable zone doesn't mean it is habitable," Quintana says. "This is sort of a first step."
However, Kane argues that the greater mass of Kepler-186f makes it more likely than Mars to have an interior heated by radioactivity and stirred by the motion of fluids. Such motions are required to power a dynamo that generates a protective magnetic field as well as volcanoes, whose eruptions would help replenish a life-friendly atmosphere. The planet's mass would also give it enough gravity to hold on to that atmosphere.
"The other big question is whether it has water, delivered by comets or some other means," Kane says. "Any place with liquid water is a natural place to look for life."
Unfortunately, Kepler-186f is likely too dim and far away to be seen directly with any telescope now in operation, or even with NASA's James Webb Space Telescope, scheduled for launch in 2018.
"In reality we cannot know if the planet is actually habitable. We need to get a sense of the atmosphere and its greenhouse effect," Seager says. "Not possible for this particular planet, as it is too distant from Earth for follow-up observations."
Kepler's Chase
The latest Kepler discovery came from a trove of star observations that the spacecraft made before a reaction wheel in its steering system failed last year, hobbling the mission. A reduced "K2" mission was announced in March.
Hiding amid the existing Kepler observations, Kane says, are more unconfirmed "candidate" planets orbiting stars as big as the sun, at distances similar to Earth's 93-million-mile (150-million-kilometer) distance from the sun.
"There are still a lot more Kepler 'habitable zone' worlds out there to find," Kane says. "Almost certainly this is not the last one."
Follow Dan Vergano on Twitter.

Read More : http://news.nationalgeographic.com/news/2014/04/140417-earth-planet-kepler-habitable-science-nasa/

Tuesday, 16 October 2012

Artist's Rendering Of Kepler's Target Region In The Milky Way (Close Up)

Artist's Rendering Of Kepler's Target Region In The Milky Way (Close Up)

 

An artists rendering of what our galaxy might look as viewed from outside our Galaxy. Our sun is about 25,000 light years from the center of the galaxy. The cone illustrates the neighborhood of our galaxy that the Kepler Mission will search to find habitable planets. Credit: Jon Lomberg.

Planet Kepler 10B Orbiting its Host Star

Planet Kepler 10B Orbiting its Host Star

Kepler-10b orbits one of the 150,000 stars that the spacecraft is monitoring between the constellations of Cygnus and Lyra. We aim our mosaic of 42 detectors there, under the swan’s wing, just above the plane of the Milky Way galaxy. The star itself is very similar to our own sun in temperature, mass and size, but older with an age of over 8 billion years, compared to the 4-and-1/2 billion years of our own sun. It’s a quiet star, slowly spinning with a weak magnetic field and few of the sun spots that characterize our own sun. The star’s about 560 light years from our solar system and one of the brighter stars that Kepler is monitoring. It was the first we identified as potentially harboring a very small transiting planet. The transits of the planet were first seen in July of 2009.

The diameter of Kepler-10b is only about 1.4 times the diameter of Earth and it's mass is about 4.5 times that of Earth. It is the best example of a rocky planet to date.

Credit: NASA/Kepler Mission/Dana Berry

An Imagined Canyon on Planet Kepler 10-b

An Imagined Canyon on Planet Kepler 10-b

The daytime temperature’s expected to be more than 2,500 degrees Fahrenheit, hotter than lava flows here on Earth, hot enough to melt iron! Many years ago, before Kepler launched, members of what became the Kepler team built a robotic telescope at Lick Observatory to learn to do transit photometry--detecting drops in brightness of stars when planets pass in front of them. We called it the “Vulcan Telescope,” named after the hypothetical planet that scientists in the 1800’s thought might exist between the Sun and Mercury. A planet that might explain the small deviations in Mercury’s orbit that were later explained with Einstein’s theory of general relativity.

Vulcan is the god of fire in Roman mythology, a name befitting of a world so close to the Sun. The artist’s rendering of Kepler-10b is reminiscent of that hypothetical planet Vulcan. The Kepler team came full circle in its quest. We know that we’ve only begun to imagine the possibilities.
Credit: NASA/Kepler Mission/Dana Berry

Planet Kepler 10-B in Orbit

Planet Kepler 10-B in Orbit

Planet Kepler-10b is orbiting it star about 20 times closer to its star than Mercury is to our own Sun. It takes less than one Earth day to orbit its star! The daytime temperature’s expected to be more than 2,500 degrees Fahrenheit, hotter than lava flows here on Earth. It is the smallest exoplanet (a planet located outside our solar system) discovered to date. All of Kepler’s best capabilities have converged to yield the first solid evidence of a solid planet orbiting a star other than our Sun.Knowledge of the planet is only as good as the knowledge of the star it orbits. Scientists of the Kepler Asteroseismic Science Consortium (KASC) were able to detect high frequency variations in the star’s brightness generated by stellar oscillations, or “starquakes.” Data arising from light waves that travel within the interior of the star lead to better understanding of the star, just as earthquakes are used to learn about the interior structure of Earth. As a result of this analysis, Kepler-10 is one of the most well . characterized planet-hosting stars in the universe next to the Sun. This analysis also allowed scientists to pin down the properties of Kepler-10b. It is unequivocally a rocky planet, with a surface you could stand on, a mass 4.6 times that of Earth, a diameter 1.4 times that of Earth, and an average density of 8.8 grams per cubic centimeter -- similar to that of an iron dumbbell.

Credit: NASA/Kepler Mission/Dana Berry

Kepler 10b Planet Comparison

Kepler 10b Planet Comparison

here is a comparison of Kepler 10b Planet with other planets.Temperature and Size of different planets from our solars system and kepler system are compared.

Kepler-10 Stellar Family Portrait

Kepler-10 Stellar Family Portrait

This artist's conception depicts the Kepler-10 star system, located about 560 light-years away near the Cygnus and Lyra constellations. Kepler has discovered two planets around this star. Kepler-10b is, to date, the smallest known rocky exoplanet, or planet outside our solar system (dark spot against yellow sun). This planet, which has a radius of 1.4 times that of Earth's, whips around its star every .8 days. Its discovery was announced in Jan. 2011. Now, in May 2011, the Kepler team is announcing another member of the Kepler-10 family, called Kepler-10c (larger foreground object). It's bigger than Kepler-10b with a radius of 2.2 times that of Earth's, and it orbits the star every 45 days. Both planets would be blistering hot worlds.

Kepler-10c was first identified by Kepler, and later validated using a combination of a computer simulation technique called "Blender," and NASA's Spitzer Space Telescope. Both of these methods are powerful ways to validate the Kepler planets that are too small and faraway for ground-based telescopes to confirm using the radial-velocity technique. The Kepler team says that a large fraction of their discoveries will be validated with both of these methods.

In the case of Kepler-10c, scientists can be 99.998 percent sure that the signal they detected is from an orbiting planet. Part of this confidence comes from the fact thatSpitzer, an infrared observatory, saw a signal similar to what Kepler detected in visible light. If the signal were coming from something other than an orbiting planet -- for example an indistinguishable background pair of orbiting stars -- then scientists would expect to see different signals in visible and infrared light.

Image credit: NASA/Ames/JPL-Caltech

Kepler 11 Solar System Comparison

Kepler 11 Solar System Comparison

This artist’s conception shows the Kepler-11 planetary system and our solar system from a tilted perspective to demonstrate that the orbits of each lie on similar planes.
Image credit: NASA/Tim Pyle

Kepler 11 Introduction

Kepler 11 Introduction

Kepler-11 is a sun-like star around which six planets orbit. At times, two or more planets pass in front of the star at once, as shown in this artist's conception of a simultaneous transit of three planets observed by NASA's Kepler spacecraft on Aug. 26, 2010.
Image credit: NASA/Tim Pyle

Where the Sun Sets Twice

Where the Sun Sets Twice

NASA's Kepler mission has discovered a world where two suns set over the horizon instead of just one. The planet, called Kepler-16b, is the most "Tatooine-like" planet yet found in our galaxy and is depicted here in this artist's concept with its two stars. Tatooine is the name of Luke Skywalker's home world in the science fiction movie Star Wars. In this case, the planet is not thought to be habitable. It is a cold world, with a gaseous surface, but like Tatooine, it circles two stars. The largest of the two stars, a K dwarf, is about 69 percent the mass of our sun, and the smallest, a red dwarf, is about 20 percent the sun's mass.

Most of what we know about the size of stars comes from pairs of stars that are oriented toward Earth in such a way that they are seen to eclipse each other. These star pairs are called eclipsing binaries. In addition, virtually all that we know about the size of planets around other stars comes from their transits across their stars. The Kepler-16 system combines the best of both worlds with planetary transits across an eclipsing binary system. This makes Kepler-16b one of the best-measured planets outside our solar system.

Kepler-16 orbits a slowly rotating K-dwarf that is, nevertheless, very active with numerous star spots. Its other parent star is a small red dwarf. The planetary orbital plane is aligned within half a degree of the stellar binary orbital plane. All these features combine to make Kepler-16 of major interest to studies of planet formation as well as astrophysics.Credit: NASA/JPL-Caltech/R. Hurt

In the Light of Two Suns

In the Light of Two Suns

This artist's concept illustrates Kepler-16b, the first planet known to definitively orbit two stars -- what's called a circumbinary planet. The planet, which can be seen in the foreground, was discovered by NASA's Kepler mission.

The two orbiting stars regularly eclipse each other, as seen from our point of view on Earth. The planet also eclipses, or transits, each star, and Kepler data from these planetary transits allowed the size, density and mass of the planet to be extremely well determined. The fact that the orbits of the stars and the planet align within a degree of each other indicate that the planet formed within the same circumbinary disk that the stars formed within, rather than being captured later by the two stars.

Credit: NASA/JPL-Caltech/T. Pyle

Closer to Finding New Earth

Closer to Finding New Earth

This artist's conception illustrates Kepler-22b, a planet known to comfortably circle in the habitable zone of a sun-like star. It is the first planet that NASA's Kepler mission has confirmed to orbit in a star's habitable zone -- the region around a star where liquid water, a requirement for life on Earth, could persist. The planet is 2.4 times the size of Earth, making it the smallest yet found to orbit in the middle of the habitable zone of a star like our sun.

Scientists do not yet know if the planet has a predominantly rocky, gaseous or liquid composition. It's possible that the world would have clouds in its atmosphere, as depicted here in the artist's interpretation.

Image credit: NASA/Ames/JPL-Caltech

Kepler Planet Sizes

Kepler Planet Sizes

Comparative sizes of Kepler planets, through Kepler-22b.

Credit: NASA/Kepler mission/Wendy Stenzel

Bird's Eye View of the Kepler-16 System

Bird's Eye View of the Kepler-16 System

A comparison graphic showing the Kepler-16 system with the scale of the inner planets of our own solar system.

Kepler-22b -- Comfortably Circling within the Habitable Zone

Kepler-22b -- Comfortably Circling within the Habitable Zone

This diagram compares our own solar system to Kepler-22, a star system containing the first "habitable zone" planet discovered by NASA's Kepler mission. The habitable zone is the sweet spot around a star where temperatures are right for water to exist in its liquid form. Liquid water is essential for life on Earth.
than our sun, so its habitable zone is slightly closer in. The diagram shows an artist's rendering of the planet comfortably orbiting within the habitable zone, similar to where Earth circles the sun. Kepler-22b has a yearly orbit of 289 days. The planet is the smallest known to orbit in the middle of the habitable zone of a sun-like star. It's about 2.4 times the size of Earth.

Image credit: NASA/Ames/JPL-Caltech
Kepler-22's star is a bit smaller

Artist's Concept of Kepler-20f

Artist's Concept of Kepler-20f

NASA's Kepler mission has discovered the first Earth-size planets orbiting a sun-like star outside our solar system. The planets, called Kepler-20e and Kepler-20f, are too close to their star to be in the so-called habitable zone where liquid water could exist on a planet's surface, but they are the smallest exoplanets ever confirmed around a star like our sun.

Kepler-20f is the closest object to the Earth in terms of size ever discovered. With an orbital period of 20 days and a surface temperature of 800 degrees Fahrenheit, it is too hot to host life, as we know it.

For more information about the Kepler mission and to view the digital press kit, visit:

http://www.nasa.gov/kepler

Image credit: NASA/Ames/JPL-Caltech

Artist's Concept of Kepler-20e

Artist's Concept of Kepler-20e

NASA's Kepler mission has discovered the first Earth-size planets orbiting a sun-like star outside our solar system. The planets, called Kepler-20e and Kepler-20f, are too close to their star to be in the so-called habitable zone where liquid water could exist on a planet's surface, but they are the smallest exoplanets ever confirmed around a star like our sun.

Kepler-20e is the first planet smaller than the Earth discovered to orbit a star other than the sun. A year on Kepler-20e only lasts 6 days, as it is much closer to its host star than the Earth is to the sun. The temperature at the surface of the planet, around 1400 degrees Fahrenheit, is much to hot to support life, as we know it.

Kepler-20e is likely to be entirely rocky and without an atmosphere. The planet is tidally locked, always showing the same side to its host star, as the moon to the Earth, and could have large temperature differences between its permanent night and day sides.

Astronomers think that the planet is likely to be geologically active, due to its own formation process and the strong gravitational interactions with its host star. In this artistic depiction, the planet is represented with active volcanoes on both the night and day sides.

For more information about the Kepler mission and to view the digital press kit, visit:

http://www.nasa.gov/kepler

Image credit: NASA/Ames/JPL-Caltech

Earth-class Planets Line Up

Earth-class Planets Line Up

This chart compares the first Earth-size planets found around a sun-like star to planets in our own solar system, Earth and Venus. NASA's Kepler mission discovered the new found planets, called Kepler-20e and Kepler-20f. Kepler-20e is slightly smaller than Venus with a radius .87 times that of Earth. Kepler-20f is a bit larger than Earth at 1.03 times the radius of Earth. Venus is very similar in size to Earth, with a radius of .95 times that our planet. Prior to this discovery, the smallest known planet orbiting a sun-like star was Kepler-10b with a radius of 1.42 that of Earth, which translates to 2.9 times the volume.

Both Kepler-20e and Kepler-20f circle in close to their star, called Kepler-20, with orbital periods of 6.1 and 19.6 days, respectively. Astronomers say the two little planets are rocky like Earth but with scorching temperatures.

There are three other larger, likely gaseous planets also know to circlethe same star, known as Kepler-20b, Kepler-20c and Kepler-20d.

For more information about the Kepler mission and to view the digital press kit, visit:

http://www.nasa.gov/kepler

Image credit: NASA/Ames/JPL-Caltec

'Honey I Shrunk the Planetary System'

'Honey I Shrunk the Planetary System'

This artist's conception compares the KOI-961 planetary system to Jupiter and the largest four of its many moons. The KOI-961 planetary system hosts the three smallest planets known to orbit a star beyond our sun (called KOI-961.01, KOI-961.02 and KOI-961.03). The smallest of these planets, KOI-961.03, is about the same size as Mars. All three planets take less than two days to whip around their star.The planets were discovered using data from NASA's Kepler mission and ground-based telescopes. The KOI-961 star is a tiny "red dwarf," just one-sixth the size of our sun. This planetary system is the most compact detected to date, with a scale closer to Jupiter and its moons than another star system.

The planet and moon orbits are drawn to the same scale. The relative sizes of the stars, planets and moons have been increased for visibility.

Image credit: Caltech

Sizing Up Exoplanets

Sizing Up Exoplanets

This chart compares the smallest known exoplanets, or planets orbiting outside the solar system, to our own planets Mars and Earth. Astronomers using data from NASA's Kepler mission and ground-based telescopes recently discovered the three smallest exoplanets known to circle another star, called KOI-961.01, KOI-961.02 and KOI-961.03. The smallest of these, KOI-961.03, is about the size of Mars with a radius of only 0.57 times that of Earth. Not long ago, in Dec. of 2011, the Kepler team announced the discovery of Kepler-20e and Kepler-20f -- the first Earth-size planets ever found outside the solar system. All five of these small exoplanets have toasty orbits close to their stars, and do not lie in the more temperate habitable zone.

The ground-based observations contributing to the KOI-961 discoveries were made with the Palomar Observatory, near San Diego, Calif., and the W.M. Keck Observatory atop Mauna Kea in Hawaii.Image credit: NASA/JPL-Caltech