NAME OGLE-TR 182b , the SIMBAD biblio

NAME OGLE-TR 182b , the SIMBAD biblio (37 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST19:31:48


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Title First 3 Authors
2007ApJ...669.1345H 6 5 Millimagnitude photometry for transiting extrasolar planetary candidates. IV. Solution to the puzzle of the extremely red OGLE-TR-82 primary. HOYER S., RAMIREZ ALEGRIA S., IVANOV V.D., et al.
2008A&A...482..299U 75           X         2 34 30 OGLE-TR-211 - a new transiting inflated hot Jupiter from the OGLE survey and ESO LP666 spectroscopic follow-up program. UDALSKI A., PONT F., NAEF D., et al.
2008ApJ...678.1436B 17       D               1 54 240 Theoretical spectra and light curves of close-in extrasolar giant planets and comparison with data. BURROWS A., BUDAJ J. and HUBENY I.
2008A&A...487..749P 98     A S             2 32 32 A transiting planet among 23 new near-threshold candidates from the OGLE survey - OGLE-TR-182. PONT F., TAMUZ O., UDALSKI A., et al.
2009ApJ...690.1393S 39           X         1 16 32 HAT-P-9b: a low-density planet transiting a moderately faint F star. SHPORER A., BAKOS G.A., BOUCHY F., et al.
2009ApJ...692L...9L viz 77               F     1 51 150 Falling transiting extrasolar giant planets. LEVRARD B., WINISDOERFFER C. and CHABRIER G.
2009MNRAS.394..272S 88 130 Homogeneous studies of transiting extrasolar planets - II. Physical properties. SOUTHWORTH J.
2009MNRAS.396.1012D 38           X         1 88 27 Evidence for a lost population of close-in exoplanets. DAVIS T.A. and WHEATLEY P.J.
2009ApJ...700..832C 76               F     1 74 34 The role of planet accretion in creating the next generation of red giant rapid rotators. CARLBERG J.K., MAJEWSKI S.R. and ARRAS P.
2008Msngr.133...21M 51 0 Behind the scenes of the discovery of two extrasolar planets: ESO large programme 666. MINNITI D., MELO C., NAEF D., et al.
2009ApJ...702.1413M 76               F     85 92 Inflating and deflating hot jupiters: coupled tidal and thermal evolution of known transiting planets. MILLER N., FORTNEY J.J. and JACKSON B.
2009A&A...504..605F 114           X         3 59 12 Interpreting the yield of transit surveys: are there groups in the known transiting planets population? FRESSIN F., GUILLOT T. and NESTA L.
2009A&A...506..399L 16       D               1 62 131 Determining the mass loss limit for close-in exoplanets: what can we learn from transit observations? LAMMER H., ODERT P., LEITZINGER M., et al.
2010ApJ...716.1336K viz 15       D               1 245 20 Stability analysis of single-planet systems and their habitable zones. KOPPARAPU R.K. and BARNES R.
2010MNRAS.405.2037W 15       D               1 62 21 Orbital period variations of hot jupiters caused by the Applegate effect. WATSON C.A. and MARSH T.R.
2010MNRAS.406.1918D 15       D               1 404 29 The Hill stability of the possible moons of extrasolar planets. DONNISON J.R.
2010MNRAS.407.1259J 15       D               1 91 27 Habitability of exoplanetary systems with planets observed in transit. JONES B.W. and SLEEP P.N.
2010A&A...521A..76W 15       D               1 89 27 Limits on the orbits and masses of moons around currently-known transiting exoplanets. WEIDNER C. and HORNE K.
2010ApJ...725.1995M 129 145 Tidal evolution of close-in planets. MATSUMURA S., PEALE S.J. and RASIO F.A.
2011AJ....141...59B 15       D               1 80 30 The reflection effect in interacting binaries or in planet-star systems. BUDAJ J.
2011A&A...529A.136E 15       D               1 106 105 Mass-loss rates for transiting exoplanets. EHRENREICH D. and DESERT J.-M.
2011MNRAS.417..709A 38           X         1 34 60 Qatar-1b: a hot Jupiter orbiting a metal-rich K dwarf star. ALSUBAI K.A., PARLEY N.R., BRAMICH D.M., et al.
2012A&A...540A..99E 15       D               1 123 55 Factors affecting the radii of close-in transiting exoplanets. ENOCH B., COLLIER CAMERON A. and HORNE K.
2012ApJ...751...96P 15       D               1 53 60 Constraining tidal dissipation in stars from the destruction rates of exoplanets. PENEV K., JACKSON B., SPADA F., et al.
2012MNRAS.422.2024J viz 40           X         1 63 151 The coronal X-ray-age relation and its implications for the evaporation of exoplanets. JACKSON A.P., DAVIS T.A. and WHEATLEY P.J.
2011PASP..123..412W viz 15       D               1 2897 398 The Exoplanet Orbit Database. WRIGHT J.T., KAKHOURI O., MARCY G.W., et al.
2013ApJ...764...18L viz 16       D               1 174 6 Pulsation frequencies and modes of giant exoplanets. LE BIHAN B. and BURROWS A.
2013A&A...552A.119S viz 16       D               1 1487 118 Magnetic energy fluxes in sub-Alfvenic planet star and moon planet interactions. SAUR J., GRAMBUSCH T., DULING S., et al.
2014ApJ...796...48Z viz 16       D               1 199 11 The ground-based H-, K-, and L-band absolute emission spectra of HD 209458b. ZELLEM R.T., GRIFFITH C.A., DEROO P., et al.
2014MNRAS.445.4395Y viz 16       D               1 192 1 On the structure and evolution of planets and their host stars - effects of various heating mechanisms on the size of giant gas planets. YILDIZ M., CELIK ORHAN Z., KAYHAN C., et al.
2015ApJ...798...66D 40           X         1 296 60 The photoeccentric effect and proto-hot jupiters. III. A paucity of proto-hot jupiters on super-eccentric orbits. DAWSON R.I., MURRAY-CLAY R.A. and JOHNSON J.A.
2017ApJ...834...17C viz 17       D               1 290 454 Probabilistic forecasting of the masses and radii of other worlds. CHEN J. and KIPPING D.
2017A&A...602A.107B viz 16       D               3 476 185 The GAPS Programme with HARPS-N at TNG. XIV. Investigating giant planet migration history via improved eccentricity and mass determination for 231 transiting planets. BONOMO A.S., DESIDERA S., BENATTI S., et al.
2019ApJ...874L..31T viz 17       D               1 403 62 Connecting giant planet atmosphere and interior modeling: constraints on atmospheric metal enrichment. THORNGREN D. and FORTNEY J.J.
2019A&A...630A.135U viz 17       D               1 501 16 Beyond the exoplanet mass-radius relation. ULMER-MOLL S., SANTOS N.C., FIGUEIRA P., et al.
2020AJ....159...41T viz 17       D               1 564 ~ Estimating planetary mass with deep learning. TASKER E.J., LANEUVILLE M. and GUTTENBERG N.
2021A&A...645A...7K viz 17       D               1 1569 17 Determining the true mass of radial-velocity exoplanets with Gaia. Nine planet candidates in the brown dwarf or stellar regime and 27 confirmed planets. KIEFER F., HEBRARD G., LECAVELIER DES ETANGS A., et al.

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