Showing posts with label ESA. Show all posts
Showing posts with label ESA. Show all posts

Monday, December 14, 2015

Hot Jupiters' Water is Hidden by Clouds

Exeter academics led an international team of experts in analysing observations from the NASA/ESA Hubble Space Telescope and the NASA Spitzer Space Telescope. Their combined power gave a detailed study of the atmospheres of 10 hot-Jupiter exoplanets - the largest number ever collectively studied - in a bid to understand their atmospheres. Previously, scientists had been puzzled that they had not observed water on some of these planets - but the latest study, published in Nature on Monday December 14, has revealed that their view of the water was only obscured by haze and cloud. Although no life could ever exist on such gaseous hot planets, the presence of water has significant implications for theories over how they were formed.

Known as "hot Jupiters", these gaseous planets share characteristics with Jupiter. However, they orbit very close to their stars, making their surface hot, and the planets difficult to study in detail without being overwhelmed by bright starlight. Because of this difficulty, Hubble has only explored a handful of hot Jupiters in the past.

Professor David Sing, of the University of Exeter, who led the study, said: "I'm really excited to finally 'see' this wide group of planets together, as this is the first time we've had sufficient wavelength coverage to compare multiple features from one planet to another. We found the planetary atmospheres to be much more diverse than we expected, and this significantly progresses our understanding of what makes up these planets and how they were created."

All of the planets have an orbit that brings them between their parent star and Earth. As the exoplanet passes in front of its host star, as seen from Earth, some of this starlight travels through the planet's outer atmosphere. "The atmosphere leaves its unique fingerprint on the starlight, which we can study when the light reaches us," explains co-author Dr Hannah Wakeford, a postgraduate student at the University of Exeter during the study who is now at NASA Goddard Space Flight Center, USA.

These fingerprints allowed the team to extract the signatures from various elements and molecules -- including water -- and distinguish between cloudy and cloud-free exoplanets.

The team's models revealed that, while apparently cloud-free exoplanets showed strong signs of water, the atmospheres of those hot Jupiters with faint water signals also contained clouds and haze -- both of which are known to hide water from view.

Saturday, February 28, 2015

The Gaia Mission, Binary Stars and Exoplanets

The Gaia Mission, Binary Stars and Exoplanets

Authors:

Eyer et al

Abstract:

On the 19th of December 2013, the Gaia spacecraft was successfully launched by a Soyuz rocket from French Guiana and started its amazing journey to map and characterise one billion celestial objects with its one billion pixel camera. In this presentation, we briefly review the general aims of the mission and describe what has happened since launch, including the Ecliptic Pole scanning mode. We also focus especially on binary stars, starting with some basic observational aspects, and then turning to the remarkable harvest that Gaia is expected to yield for these objects.

Sunday, June 22, 2014

A Method for Analyzing Weak Orbital Signals From Gaia

Analysing weak orbital signals in Gaia data

Author:

Lucy

Abstract:

Anomalous orbits are found when minimum-chi^{2} estimation is applied to synthetic Gaia data for weak orbital signals - i.e., orbits whose astrometric signatures are comparable to the single-scan measurement error (Pourbaix 2002). These orbits are nearly parabolic, edge-on, and their major axes align with the line-of-sight to the observer. Such orbits violate the Copernican principle (CPr) and as such could be rejected. However, the preferred alternative is to develop a statistical technique that incorporates the CPr as a fundamental postulate. This can be achieved in the context of Bayesian estimation by defining a Copernican prior. With this development, Pourbaix's anomalous orbits no longer arise. Instead, orbits with a somewhat higher chi^{2} but which do not violate the CPr are selected.

Other areas of astronomy where the investigator must analyse data from 'imperfect experiments' might similarly benefit from appropriately- defined Copernican priors.

Sunday, February 23, 2014

ESA Selects PLATO Exoplanet Telescope for 2024


A telescope to find rocky worlds around other stars has been selected for launch by the European Space Agency's (ESA) Science Policy Committee.

Known as Plato, the mission should launch on a Soyuz rocket in 2024.

The observatory concept was chosen following several years of assessment in competition with other ideas.

It is expected to cost ESA just over 600 million euros, although hardware contributions from member states will take this closer to a billion (£800m [$822 Million -me]).

Astronomers have so far found over 1,000 planets beyond our Solar System, but none as yet has been shown to be truly Earth-like in terms of its size and distance from a Sun similar to our own.

The PLAnetary Transits and Oscillations of stars mission will look to change that.