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TrES-2b

Coordinates: Sky map 19h 07m 14s, +49° 18′ 59″
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TrES-2b (or Kepler-1b) is an extrasolar planet orbiting the star GSC 03549-02811 located 750 light years away. The planet's mass and radius indicate that it is a gas giant with a similar bulk composition to Jupiter. Unlike Jupiter, but similar to many other planets detected around other stars, TrES-2b is located very close to its star, and belongs to the class of planets known as hot Jupiters. This system is within the field of view of the now operational Kepler spacecraft.[1]

This planet continues to be studied by other projects and the parameters are being improved continuously. A 2007 study improved stellar and planetary parameters.[2] Another 2008 study concluded that the TrES-2 system (along with two others) is a binary star system. This had a significant effect on the values for the stellar and the planetary parameters.[3]

Discovery

File:TrES-2 b rv.pdf
The radial velocity of GSC 03549-02811 over time, caused by the presence of TrES-2 b.

TrES-2b was discovered on August 21, 2006 by the Trans-Atlantic Exoplanet Survey by detecting the transit of the planet across its parent star using Sleuth (Palomar Observatory, California) and PSST (Lowell Observatory, Arizona), part of the TrES network of 10–cm telescopes. The discovery was confirmed by the Keck Observatory on September 8, 2006, by measuring the radial velocity of the star that hosts TrES-2b.[1]

Spin-Orbit Angle

In August 2008 more details of the relationship between the parent star and the orbit of the planet were published. The orbit was determined to be tilted by −9° ± 12° from the stellar equator. The orbital direction was determined to be in the same direction as the star's rotation (prograde).[4]

The Kepler Mission

The GSC 03549-02811 system as seen from the Kepler spacecraft. (Celestial north is towards the lower left corner.)

In March 2009 NASA launched the Kepler Mission spacecraft. This spacecraft is a dedicated mission to discover extrasolar planets by the transit method from solar orbit. In April 2009 the project released the first light images from the spacecraft and TrES-2b was one of two objects highlighted in these images. Although TrES-2b is not the only known exoplanet in the field of view of this spacecraft it is the only one identified in the first light images. This object is important for calibration and check-out.[5]

See also

References

  1. ^ a b O'Donovan; et al. (2006). "TrES-2: The First Transiting Planet in the Kepler Field". The Astrophysical Journal Letters. 651: L61–L64. arXiv:astro-ph/0609335. Bibcode:2006ApJ...651L..61O. doi:10.1086/509123. {{cite journal}}: Explicit use of et al. in: |author= (help)
  2. ^ Alessandro Sozzetti; et al. (August 1, 2007). "Improving Stellar and Planetary Parameters of Transiting Planet Systems: The Case of TrES-2". The Astrophysical Journal. 664 (2): 1190–1198. Bibcode:2007ApJ...664.1190S. doi:10.1086/519214. {{cite journal}}: Explicit use of et al. in: |author= (help)
  3. ^ Daemgen; et al. (2009). "Binarity of transit host stars - Implications for planetary parameters" (PDF). Astronomy and Astrophysics. 498: 567–574. Bibcode:2009A&A...498..567D. doi:10.1051/0004-6361/200810988. {{cite journal}}: Explicit use of et al. in: |author= (help)
  4. ^ Winn; et al. (2008). "The Prograde Orbit of Exoplanet TrES-2b". The Astrophysical Journal. 682: 1283–1288. Bibcode:2008ApJ...682.1283W. doi:10.1086/589235. {{cite journal}}: Explicit use of et al. in: |author= (help)
  5. ^ "Kepler Eyes Cluster and Known Planet". NASA. 2009-04-16. Retrieved 2009-05-09.

Media related to TrES-2b at Wikimedia Commons