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20022008
most citedTransiting exoplanets from the CoRoT space mission VI. CoRoT-Exo-3b: The first secure inhabitant of the brown-dwarf desert

243 citations · 638 across the 6 of their papers we have counts for

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9 papers · 1 filter

astro-ph20081 cited

On the Dynamics of Inclined Neptune's Trojans

Li-Yong Zhou, Rudolf Dvorak, Yi-Sui Sun

The dynamics of artificial asteroids on the Trojan-like orbits around Neptune is investigated in this paper. We describe the dependence of the orbital stability on the initial semi…

astro-ph2008243 cited

Transiting exoplanets from the CoRoT space mission VI. CoRoT-Exo-3b: The first secure inhabitant of the brown-dwarf desert

M. Deleuil, H. J. Deeg, R. Alonso +2

Context. The CoRoT space mission routinely provides high-precision photometric measurements of thousands of stars that have been continuously observed for months. Aims. The discove…

astro-ph200895 cited

Transiting exoplanets from the CoRoT space mission IV: CoRoT-Exo-4b: A transiting planet in a 9.2 day synchronous orbit

S. Aigrain, A. Collier Cameron, M. Ollivier +32

CoRoT, the first space-based transit search, provides ultra-high precision light curves with continuous time-sampling over periods, of up to 5 months. This allows the detection of…

astro-ph200878 cited

Transiting exoplanets from the CoRoT space mission III. The spectroscopic transit of CoRoT-Exo-2b with SOPHIE and HARPS

F. Bouchy, D. Queloz, M. Deleuil +34

We report on the spectroscopic transit of the massive hot-Jupiter CoRoT-Exo-2b observed with the high-precision spectrographs SOPHIE and HARPS. By modeling the radial velocity anom…

astro-ph2008221 cited

Transiting exoplanets from the CoRoT space mission I - CoRoT-Exo-1b: a low-density short-period planet around a G0V star

P. Barge, A. Baglin, M. Auvergne +35

Context. The pioneer space mission for photometric planet searches, CoRoT, steadily monitors about 12,000 stars in each of its fields of view; it is able to detect transit candidat…

astro-ph2005

The stability of the terrestrial planets with a more massive "Earth"

Áron Süli, Rudolf Dvorak, Florian Freistetter

Although the long-term numerical integrations of planetary orbits indicate that our planetary system is dynamically stable at least +/- Gyr, the dynamics of our Solar System includ…