HAT-P-19b , the SIMBAD biblio

HAT-P-19b , the SIMBAD biblio (63 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.19CEST00:27:35


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
2010ApJ...723L..60H 115           X         3 13 29 WASP-29b: a saturn-sized transiting exoplanet. HELLIER C., ANDERSON D.R., COLLIER CAMERON A., et al.
2011ApJ...726...52H viz 1291 T   A S   X C       31 20 75 HAT-P-18b and
HAT-P-19b: two low-density Saturn-mass planets transiting metal-rich K stars.
HARTMAN J.D., BAKOS G.A., SATO B., et al.
2011A&A...529A.136E 15       D               1 106 105 Mass-loss rates for transiting exoplanets. EHRENREICH D. and DESERT J.-M.
2012AJ....143...95L viz 116           X   F     2 18 19 The sub-Saturn mass transiting planet HAT-P-12b. LEE J.W., YOUN J.-H., KIM S.-L., 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.
2012A&A...540A..99E 402       D     X         11 123 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.
2012ApJ...752...72D viz 39           X         1 229 7 A correlation between the eclipse depths of Kepler gas giant candidates and the metallicities of their parent stars. DODSON-ROBINSON S.E.
2011PASP..123..412W viz 15       D               1 2897 398 The Exoplanet Orbit Database. WRIGHT J.T., KAKHOURI O., MARCY G.W., et al.
2012PASJ...64...97S 93       D     X         3 15 14 HAT-P-38b: A Saturn-mass planet transiting a late G star. SATO B., HARTMAN J.D., BAKOS A., 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.
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.
2014ApJ...792....1L 21       D               1 45 511 Understanding the mass-radius relation for sub-neptunes: radius as a proxy for composition. LOPEZ E.D. and FORTNEY J.J.
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.
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..93H viz 39           X         1 29 9 Characterization of the four new transiting planets KOI-188b, KOI-195b, KOI-192b, and KOI-830b. HEBRARD G., SANTERNE A., MONTAGNIER G., 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.
2015MNRAS.449.4192S 56       D     X         2 52 55 Balancing the energy budget of short-period giant planets: evidence for reflective clouds and optical absorbers. SCHWARTZ J.C. and COWAN N.B.
2015A&A...580A..60M 739 T   A     X C       17 24 18 Transmission spectroscopy of the inflated exo-Saturn
HAT-P-19b.
MALLONN M., VON ESSEN C., WEINGRILL J., et al.
2015ApJ...810..118K 874     A D     X C       22 16 27 Spitzer secondary eclipse observations of five cool gas giant planets and empirical trends in cool planet emission spectra. KAMMER J.A., KNUTSON H.A., LINE M.R., et al.
2015MNRAS.451.4060S 834   K A D S   X C F     19 22 7 Ground-based transit observations of the HAT-P-18, HAT-P-19, HAT-P-27/WASP40 and WASP-21 systems. SEELIGER M., KITZE M., ERRMANN R., et al.
2015A&A...583A.138M 40           X         1 15 25 Broad-band spectrophotometry of the hot Jupiter HAT-P-12b from the near-UV to the near-IR. MALLONN M., NASCIMBENI V., WEINGRILL J., et al.
2016ApJ...817..141S 95           X         2 4 60 A search for water in the atmosphere of HAT-P-26b using LDSS-3C. STEVENSON K.B., BEAN J.L., SEIFAHRT A., et al.
2016MNRAS.459.1393M viz 40           X         1 28 11 An optical transmission spectrum of the giant planet WASP-36 b. MANCINI L., KEMMER J., SOUTHWORTH J., 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.
2016MNRAS.463.2922K 41           X         1 21 22 Transmission spectroscopy of the inflated exoplanet WASP-52b, and evidence for a bright region on the stellar surface. KIRK J., WHEATLEY P.J., LOUDEN T., et al.
2017A&A...600A..10M 59       D     X         2 41 116 Observing transiting planets with JWST. Prime targets and their synthetic spectral observations. MOLLIERE P., VAN BOEKEL R., BOUWMAN J., et al.
2017MNRAS.465.3759M 162           X C       3 7 3 The DOHA algorithm: a new recipe for cotrending large-scale transiting exoplanet survey light curves. MISLIS D., PYRZAS S., ALSUBAI K.A., et al.
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.
2017MNRAS.472.3871T 41           X         1 41 12 Investigating the physical properties of transiting hot Jupiters with the 1.5-m Kuiper Telescope. TURNER J.D., LEITER R.M., BIDDLE L.I., et al.
2018AJ....155...55B 42           X         1 7 8 A comparative study of WASP-67 b and HAT-P-38 b from WFC3 data. BRUNO G., LEWIS N.K., STEVENSON K.B., et al.
2018AJ....155..112B viz 58       D     X         2 26 5 HATS-43b, HATS-44b, HATS-45b, and HATS-46b: four short-period transiting giant planets in the Neptune-Jupiter mass range. BRAHM R., HARTMAN J.D., JORDAN A., 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.
2018AJ....156...40S 165     A D     X         5 17 10 Clear and cloudy exoplanet forecasts for JWST: maps, retrieved composition, and constraints on formation with MIRI and NIRCam. SCHLAWIN E., GREENE T.P., LINE M., et al.
2018IBVS.6243....1M         O           5 3 New transit timing observations for GJ 436 b, HAT-P-3 b, HAT-P-19 b, WASP-3 b, and XO-2 b. MACIEJEWSKI G., STANGRET M., OHLERT J., et al.
2018AJ....156..127Y 82               F     1 33 9 Two warm, low-density sub-jovian planets orbiting bright stars in K2 campaigns 13 and 14. YU L., RODRIGUEZ J.E., EASTMAN J.D., 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.
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 17       D               1 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.
2020A&A...634A..43O 17       D               1 141 104 Revisited mass-radius relations for exoplanets below 120 M. OTEGI J.F., BOUCHY F. and HELLED R.
2020A&A...639A..36B 17       D               1 82 45 A transition between the hot and the ultra-hot Jupiter atmospheres. BAXTER C., DESERT J.-M., PARMENTIER V., et al.
2020MNRAS.496.4174B 1473     A S   X C       33 12 ~ A holistic and probabilistic approach to the ground-based and spaceborne data of HAT-P-19 system. BASTURK O., YALCINKAYA S., ESMER E.M., et al.
2020MNRAS.499..505D 170           X   F     3 19 ~ Colour-magnitude diagrams of transiting exoplanets - III. A public code, nine strange planets, and the role of phosphine. DRANSFIELD G. and TRIAUD A.H.M.J.
2020AJ....160..233A 43           X         1 9 ~ WASP-117 b: an eccentric hot Saturn as a future complex chemistry laboratory. ANISMAN L.O., EDWARDS B., CHANGEAT Q., et al.
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.
2021A&A...648A.127B 17       D               1 98 23 Evidence for disequilibrium chemistry from vertical mixing in hot Jupiter atmospheres. A comprehensive survey of transiting close-in gas giant exoplanets with warm-Spitzer/IRAC. BAXTER C., DESERT J.-M., TSAI S.-M., et al.
2021AJ....162...36W 17       D               1 80 ~ Trends in Spitzer secondary eclipses. WALLACK N.L., KNUTSON H.A. and DEMING D.
2021ApJS..255...15W 17       D               2 82 15 Transiting exoplanet monitoring project (TEMP). VI. The homogeneous refinement of system parameters for 39 transiting hot Jupiters with 127 new light curves. WANG X.-Y., WANG Y.-H., WANG S., et al.
2022ApJS..258...40K viz 18       D               1 180 21 ExoClock Project. II. A Large-scale Integrated Study with 180 Updated Exoplanet Ephemerides. KOKORI A., TSIARAS A., EDWARDS B., et al.
2022ApJS..259...33K viz 18       D               1 3228 19 The TESS Faint-star Search: 1617 TOIs from the TESS Primary Mission. KUNIMOTO M., DAYLAN T., GUERRERO N., et al.
2022ApJS..259...62I viz 90           X         2 395 24 TESS Transit Timing of Hundreds of Hot Jupiters. IVSHINA E.S. and WINN J.N.
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.
2022AJ....164...81K viz 45           X         1 38 10 TOI-3757 b: A Low-density Gas Giant Orbiting a Solar-metallicity M Dwarf. KANODIA S., LIBBY-ROBERTS J., CANAS C.I., et al.
2022AJ....164..220H viz 806     A D S   X C       17 31 1 Evidence of Long-term Period Variations in the Exoplanet Transit Database (ETD). HAGEY S.R., EDWARDS B. and BOLEY A.C.
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.
2023MNRAS.525..876M 112       D         F     5 90 ~ Measuring tidal dissipation in giant planets from tidal circularization. MAHMUD M.M., PENEV K.M. and SCHUSSLER J.A.
2023AJ....166..142J 327           X C       6 30 ~ Metrics for Optimizing Searches for Tidally Decaying Exoplanets. JACKSON B., ADAMS E.R. and MORGENTHALER J.P.
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