HAT-P-15b , the SIMBAD biblio

HAT-P-15b , the SIMBAD biblio (54 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST16:54:28


Sort references on where and how often the object is cited
trying to find the most relevant references on this object.
More on score
Bibcode/DOI Score in Title|Abstract|
Keywords
in a table in teXt, Caption, ... Nb occurence Nb objects in ref Citations
(from ADS)
Title First 3 Authors
2010A&A...520A..65B 39           X         1 23 54 Transiting exoplanets from the CoRoT space mission. X. CoRoT-10b: a giant planet in a 13.24 day eccentric orbit. BONOMO A.S., SANTERNE A., ALONSO R., et al.
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...724..866K viz 954 T   A D     X C       24 15 54
HAT-P-15b: a 10.9 day extrasolar planet transiting a solar-type star.
KOVACS G., BAKOS G.A., HARTMAN J.D., et al.
2011A&A...525A..54B viz 40           X         1 8 42 WASP-38b: a transiting exoplanet in an eccentric, 6.87d period orbit. BARROS S.C.C., FAEDI F., COLLIER CAMERON A., et al.
2011A&A...527A...8S viz 39           X         1 4 15 A much lower density for the transiting extrasolar planet WASP-7. SOUTHWORTH J., DOMINIK M., JORGENSEN U.G., et al.
2011A&A...529A.136E 15       D               1 106 105 Mass-loss rates for transiting exoplanets. EHRENREICH D. and DESERT J.-M.
2011MNRAS.414.1278P viz 15       D               1 79 47 Determining eccentricities of transiting planets: a divide in the mass–period plane. PONT F., HUSNOO N., MAZEH T., et al.
2011ApJ...736L..29M 22       D               1 14 198 The heavy-element masses of extrasolar giant planets, revealed. MILLER N. and FORTNEY J.J.
2011AJ....142...95K viz 39           X         1 5 15 HAT-P-31b,c: a transiting, eccentric, hot Jupiter and a long-period, massive third body. KIPPING D.M., HARTMAN J., BAKOS G.A., et al.
2011ApJ...742..116B viz 40           X         1 26 118 HAT-P-20b-HAT-P-23b: four massive transiting extrasolar planets. BAKOS G.A., HARTMAN J., TORRES G., et al.
2012ApJ...749..134H viz 156       S   X         3 15 43 HAT-P-17b,c: a transiting, eccentric, hot Saturn and a long-period, cold Jupiter. HOWARD A.W., BAKOS G.A., HARTMAN J., et al.
2012A&A...540A..82K viz 15       D               1 216 23 Evidence for enhanced chromospheric Ca II H and K emission in stars with close-in extrasolar planets. KREJCOVA T. and BUDAJ J.
2012MNRAS.422.3151H 93       D     X         3 125 58 Observational constraints on tidal effects using orbital eccentricities. HUSNOO N., PONT F., MAZEH T., et al.
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...549A.134H viz 41           X         1 21 104 WASP-52b, WASP-58b, WASP-59b, and WASP-60b: four new transiting close-in giant planets. HEBRARD G., COLLIER CAMERON A., BROWN D.J.A., et al.
2013ApJ...766....9S viz 16       D               1 538 31 An ultraviolet investigation of activity on exoplanet host stars. SHKOLNIK E.L.
2013PASP..125..154B 67           X         1 3 172 HATSouth: A global network of fully automated identical wide-field telescopes. BAKOS G.A., CSUBRY Z., PENEV K., et al.
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.
2013ApJ...778..182V 780       S   X C       18 5 2 Small inner companions of warm jupiters: lifetimes and legacies. VAN LAERHOVEN C. and GREENBERG R.
2014AJ....147...39C 39           X         1 41 27 KELT-6b: a P ∼ 7.9 day hot Saturn transiting a metal-poor star with a long-period companion. COLLINS K.A., EASTMAN J.D., BEATTY T.G., et al.
2014ApJ...785..126K viz 17       D               2 120 242 Friends of hot Jupiters. I. A radial velocity search for massive, long-period companions to close-in gas giant planets. KNUTSON H.A., FULTON B.J., MONTET B.T., et al.
2014MNRAS.440.1982H viz 40           X         1 23 77 Transiting hot Jupiters from WASP-South, Euler and TRAPPIST: WASP-95b to WASP-101b. HELLIER C., ANDERSON D.R., COLLIER CAMERON A., et al.
2014A&A...570A..64S viz 39           X         1 9 9 WASP-104b and WASP-106b: two transiting hot Jupiters in 1.75-day and 9.3-day orbits. SMITH A.M.S., ANDERSON D.R., ARMSTRONG D.J., 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.445.1114A viz 81           X         2 17 79 Three newly discovered sub-Jupiter-mass planets: WASP-69b and WASP-84b transit active K dwarfs and WASP-70Ab transits the evolved primary of a G4+K3 binary. ANDERSON D.R., COLLIER CAMERON A., DELREZ L., 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.
2013A&ARv..21...63T 16       D               1 105 89 Spectroscopy of planetary atmospheres in our Galaxy. TINETTI G., ENCRENAZ T. and COUSTENIS A.
2014A&A...572A..51F 16       D               1 111 15 Revisiting the correlation between stellar activity and planetary surface gravity. FIGUEIRA P., OSHAGH M., ADIBEKYAN V.Z., et al.
2016AJ....151...89B viz 41           X         1 12 21 HATS-17b: a transiting compact warm Jupiter in a 16.3 day circular orbit. BRAHM R., JORDAN A., BAKOS G.A., et al.
2016ApJ...825...98H 40           X         1 166 128 Warm jupiters are less lonely than hot jupiters: close neighbors. HUANG C., WU Y. and TRIAUD A.H.M.J.
2016ApJ...831...64T viz 100       D       C       2 49 237 The mass-metallicity relation for giant planets. THORNGREN D.P., FORTNEY J.J., MURRAY-CLAY R.A., et al.
2016AJ....152..182H viz 16       D               1 205 26 HAT-P-65b and HAT-P-66b: two transiting inflated hot Jupiters and observational evidence for the reinflation of close-in giant planets. HARTMAN J.D., BAKOS G.A., BHATTI W., et al.
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.
2018ApJ...856...37B 16       D               1 170 43 Jupiter analogs orbit stars with an average metallicity close to that of the Sun. BUCHHAVE L.A., BITSCH B., JOHANSEN A., et al.
2018MNRAS.478.1763L viz 16       D               1 518 9 The detectability of radio emission from exoplanets. LYNCH C.R., MURPHY T., LENC E., et al.
2018ApJS..239...14J viz 16       D               1 1561 6 Revised exoplanet radii and habitability using Gaia data release 2. JOHNS D., MARTI C., HUFF M., et al.
2019A&A...622A..81M viz 100       D         F     2 39 22 Ephemeris refinement of 21 hot Jupiter exoplanets with high timing uncertainties. MALLONN M., VON ESSEN C., HERRERO E., 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.
2019AJ....157..242E viz 17       D               1 371 71 An updated study of potential targets for Ariel. EDWARDS B., MUGNAI L., TINETTI G., et al.
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.
2019AJ....158..217W 1003     A D     X C       24 19 ~ Investigating trends in atmospheric compositions of cool gas giant planets using Spitzer secondary eclipses. WALLACK N.L., KNUTSON H.A., MORLEY C.V., et al.
2020AJ....159...41T viz 17       D               1 564 ~ Estimating planetary mass with deep learning. TASKER E.J., LANEUVILLE M. and GUTTENBERG N.
2020ApJ...893L..29B viz 17       D               1 61 28 WASP-4 is accelerating toward the Earth. BOUMA L.G., WINN J.N., HOWARD A.W., et al.
2020ApJ...903..147M 17       D               1 23 ~ Theoretical versus observational uncertainties: composition of giant exoplanets. MULLER S., BEN-YAMI M. and HELLED R.
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.
2022AJ....164...15E viz 18       D               1 514 13 The Ariel Target List: The Impact of TESS and the Potential for Characterizing Multiple Planets within a System. EDWARDS B. and TINETTI G.
2022A&A...664A.162M viz 314     A D     X C       7 11 2 The GAPS Programme at TNG. XXXVI. Measurement of the Rossiter-McLaughlin effect and revising the physical and orbital parameters of the HAT-P-15, HAT-P-17, HAT-P-21, HAT-P-26, HAT-P-29 eccentric planetary systems,. MANCINI L., ESPOSITO M., COVINO E., et al.
2023A&A...669A..24M 19       D               1 14 5 Towards a new era in giant exoplanet characterisation. MULLER S. and HELLED R.
2023AJ....165..104D viz 93           X         2 73 1 Emergent Spectral Fluxes of Hot Jupiters: An Abrupt Rise in Dayside Brightness Temperature Under Strong Irradiation. DEMING D., LINE M.R., KNUTSON H.A., et al.
2023ApJS..265....4K viz 19       D               1 454 2 ExoClock Project. III. 450 New Exoplanet Ephemerides from Ground and Space Observations. KOKORI A., TSIARAS A., EDWARDS B., et al.
2023RAA....23f5005B 19       D               1 60 ~ Relation between Mass and Radius of Exoplanets Distinguished by their Density. BETZLER A.S. and MIRANDA J.G.V.
2024ApJS..270...14W 20       D               1 333 ~ Long-term Variations in the Orbital Period of Hot Jupiters from Transit-timing Analysis Using TESS Survey Data. WANG W., ZHANG Z., CHEN Z., et al.

goto View the references in ADS