HAT-P-16 , the SIMBAD biblio

HAT-P-16 , the SIMBAD biblio (65 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.23CEST10:45:36


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...719..602S 230     A D     X C       6 84 181 Evidence of possible spin-orbit misalignment along the line of sight in transiting exoplanet systems. SCHLAUFMAN K.C.
2010ApJ...720.1118B viz 612   K A     X C F     14 7 244
HAT-P-16b: a 4 MJ planet transiting a bright star on an eccentric orbit.
BUCHHAVE L.A., BAKOS G.A., HARTMAN J.D., et al.
2010ApJ...720.1569K 169       D       C F     2 67 238 A correlation between stellar activity and hot Jupiter emission spectra. KNUTSON H.A., HOWARD A.W. and ISAACSON H.
2011MNRAS.414..108B viz 15       D               2 215 1 On the use of the Virtual Observatory to select calibrators for phase-referenced astrometry of exoplanet-host stars. BEUST H., BONNEAU D., MOURARD D., et al.
2011MNRAS.414.1278P viz 38           X         1 79 47 Determining eccentricities of transiting planets: a divide in the mass–period plane. PONT F., HUSNOO N., MAZEH T., et al.
2011A&A...533A.113M 500     A D S   X C       12 14 46 Spin-orbit inclinations of the exoplanetary systems HAT-P-8b, HAT-P-9b,
HAT-P-16b, and HAT-P-23b.
MOUTOU C., DIAZ R.F., UDRY S., et al.
2011A&A...534L...6T 15       D               1 29 43 The time dependence of hot Jupiters' orbital inclinations. TRIAUD A.H.M.J.
2012MNRAS.422.3151H 155           X C       3 125 58 Observational constraints on tidal effects using orbital eccentricities. HUSNOO N., PONT F., MAZEH T., et al.
2012MNRAS.423.1503B viz 15       D               1 49 26 Rossiter-McLaughlin effect measurements for WASP-16, WASP-25 and WASP-31. BROWN D.J.A., COLLIER CAMERON A., ANDERSON D.R., et al.
2012ApJ...757....6H 15       D               1 76 32 Calibration of equilibrium tide theory for extrasolar planet systems. II. HANSEN B.M.S.
2012ApJ...757...18A viz 466     A D     X C       12 84 472 Obliquities of hot Jupiter host stars: evidence for tidal interactions and primordial misalignments. ALBRECHT S., WINN J.N., JOHNSON J.A., et al.
2012ApJ...757..161T viz 17       D               1 60 262 Improved spectroscopic parameters for transiting planet hosts. TORRES G., FISCHER D.A., SOZZETTI A., et al.
2013ApJ...766....9S viz 16       D               1 538 31 An ultraviolet investigation of activity on exoplanet host stars. SHKOLNIK E.L.
2013ApJ...766L..20F 39           X         1 26 44 Absorbing gas around the WASP-12 planetary system. FOSSATI L., AYRES T.R., HASWELL C.A., et al.
2013A&A...551L...8P viz 16       D               2 7420 121 Chromospheric activity as age indicator. An L-shaped chromospheric-activity versus age diagram. PACE G.
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...771..107E viz 16       D               1 756 47 Spectroscopy of faint Kepler mission exoplanet candidate host stars. EVERETT M.E., HOWELL S.B., SILVA D.R., et al.
2013A&A...556A.150S viz 16       D               1 635 211 SWEET-Cat: a catalogue of parameters for Stars With ExoplanETs. I. New atmospheric parameters and masses for 48 stars with planets. SANTOS N.C., SOUSA S.G., MORTIER A., et al.
2013A&A...557A..30C viz 1132 T K A D S   X C       27 6 16 Simultaneous follow-up of planetary transits: revised physical properties for the planetary systems
HAT-P-16 and WASP-21.
CICERI S., MANCINI L., SOUTHWORTH J., 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.
2014ApJ...786..102V 16       D               1 110 47 Tidal dissipation and obliquity evolution in hot Jupiter systems. VALSECCHI F. and RASIO F.A.
2014ApJ...788....1B 39           X         1 24 27 Stellar rotation-planetary orbit period commensurability in the HAT-P-11 system. BEKY B., HOLMAN M.J., KIPPING D.M., et al.
2014ApJ...788...39T viz 212       D     X         6 31 43 C/O ratios of stars with transiting hot Jupiter exoplanets. TESKE J.K., CUNHA K., SMITH V.V., et al.
2014ApJ...789..113B 16       D               1 51 3 Tidally distorted exoplanets: density corrections for short-period hot-jupiters based solely on observable parameters. BURTON J.R., WATSON C.A., FITZSIMMONS A., et al.
2014ApJ...790L..31D 80             C       1 14 55 On the tidal origin of hot Jupiter stellar obliquity trends. DAWSON R.I.
2014MNRAS.442.1844B 16       D               2 81 26 Discrepancies between isochrone fitting and gyrochronology for exoplanet host stars? BROWN D.J.A.
2014MNRAS.443.2391M viz 39           X         1 22 36 Physical properties, star-spot activity, orbital obliquity and transmission spectrum of the Qatar-2 planetary system from multicolour photometry. MANCINI L., SOUTHWORTH J., CICERI S., et al.
2015A&A...574A..39D viz 56       D     X         2 113 33 Evolution of angular-momentum-losing exoplanetary systems. Revisiting Darwin stability. DAMIANI C. and LANZA A.F.
2015ApJ...800..138N 214       D S   X         5 64 116 Friends of hot jupiters. II. No correspondence between Hot-Jupiter spin-orbit misalignment and the incidence of directly imaged stellar companions. NGO H., KNUTSON H.A., HINKLEY S., et al.
2014NewA...27..102P 79             C       7 11 8 Photometric observation of HAT-P-16b in the near-UV. PEARSON K.A., TURNER J.D. and SAGAN T.G.
2015A&A...575A..18B viz 16       D               1 319 28 Revising the ages of planet-hosting stars. BONFANTI A., ORTOLANI S., PIOTTO G., et al.
2015A&A...575A..23W 16       D               1 53 15 A Lucky Imaging search for stellar companions to transiting planet host stars. WOELLERT M., BRANDNER W., BERGFORS C., et al.
2015ApJ...812L..35F 16       D               1 42 14 A bimodal correlation between host star chromospheric emission and the surface gravity of hot jupiters. FOSSATI L., INGRASSIA S. and LANZA A.F.
2015ApJ...814..148P 214       D     X C       5 53 18 Friends of hot jupiters. III. An infrared spectroscopic search for low-mass stellar companions. PISKORZ D., KNUTSON H.A., NGO H., et al.
2016PASP..12824402S 458       D S   X         11 11 ~ Exoplanet Transits Registered at the Universidad de Monterrey Observatory. I. HAT-P-12b, HAT-P-13b, HAT-P-16b, HAT-P-23b, and WASP-10b. SADA P.V. and RAMON-FOX F.G.
2016ApJ...823...29A 16       D               1 117 7 Spin-orbit alignment for three transiting hot jupiters: WASP-103b, WASP-87b, and WASP-66b. ADDISON B.C., TINNEY C.G., WRIGHT D.J., et al.
2016A&A...591A.118S viz 16       D               1 31406 141 The PASTEL catalogue: 2016 version. SOUBIRAN C., LE CAMPION J.-F., BROUILLET N., et al.
2016MNRAS.459..789T 41           X         1 46 73 Ground-based near-UV observations of 15 transiting exoplanets: constraints on their atmospheres and no evidence for asymmetrical transits. TURNER J.D., PEARSON K.A., BIDDLE L.I., et al.
2016AJ....152..181H viz 16       D               1 9279 22 SETI observations of exoplanets with the Allen Telescope Array. HARP G.R., RICHARDS J., TARTER J.C., et al.
2017AJ....153..136S viz 16       D               1 525 287 Accurate empirical radii and masses of planets and their host stars with Gaia parallaxes. STASSUN K.G., COLLINS K.A. and GAUDI B.S.
2017A&A...601A.104F 41           X         1 45 13 The effect of ISM absorption on stellar activity measurements and its relevance for exoplanet studies. FOSSATI L., MARCELJA S.E., STAAB D., et al.
2016PASP..128f4401T viz 40           X         1 23 6 WASP-120 b, WASP-122 b, AND WASP-123 b: three newly discovered planets from the WASP-South survey. TURNER O.D., ANDERSON D.R., COLLIER CAMERON A., et al.
2017A&A...602A.107B viz 16       D               12 476 185 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.
2017A&A...603A..30S viz 16       D               2 2500 58 Observational evidence for two distinct giant planet populations. SANTOS N.C., ADIBEKYAN V., FIGUEIRA P., 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.477..175O 16       D               1 42 2 Constraining planetary migration and tidal dissipation with coeval hot Jupiters. O'CONNOR C.E. and HANSEN B.M.S.
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.
2019AJ....158..190H viz 17       D               1 343 61 Hot Jupiters are destroyed by tides while their host stars are on the main sequence. HAMER J.H. and SCHLAUFMAN K.C.
2019A&A...631A.111A 17       D               1 67 ~ Does magnetic field impact tidal dynamics inside the convective zone of low-mass stars along their evolution? ASTOUL A., MATHIS S., BARUTEAU C., et al.
2019MNRAS.490.5088M viz 17       D               2 214 32 Search for stellar companions of exoplanet host stars by exploring the second ESA-Gaia data release. MUGRAUER M.
2020ApJ...890...23L viz 17       D               1 4935 35 Current population statistics do not favor photoevaporation over core-powered mass loss as the dominant cause of the exoplanet radius gap. LOYD R.O.P., SHKOLNIK E.L., SCHNEIDER A.C., et al.
2020AJ....159..194V viz 17       D               1 288 ~ A statistical search for star-planet interaction in the ultraviolet using GALEX. VISWANATH G., NARANG M., MANOJ P., et al.
2020A&A...643A.169K 17       D               1 92 ~ More planetary candidates from K2 Campaign 5 using TRAN_K2. KOVACS G.
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.
2021ApJ...909..115C viz 17       D               1 2175 13 Planets Across Space and Time (PAST). I. Characterizing the memberships of Galactic components and stellar ages: revisiting the kinematic methods and applying to planet host stars. CHEN D.-C., XIE J.-W., ZHOU J.-L., et al.
2021ApJS..255...15W 17       D               1 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.
2022AJ....163..104F 18       D               2 61 7 The Breakthrough Listen search for intelligent life: technosignature search of Transiting TESS Targets of Interest. FRANZ N., CROFT S., SIEMION A.P.V., et al.
2022ApJS..259...62I viz 18       D               1 395 24 TESS Transit Timing of Hundreds of Hot Jupiters. IVSHINA E.S. and WINN J.N.
2022A&A...661A..23F viz 90       S             1 58 15 Exoplanet X-ray irradiation and evaporation rates with eROSITA. FOSTER G., POPPENHAEGER K., ILIC N., et al.
2022AJ....164...26H viz 18       D               2 120 4 Evidence for the Late Arrival of Hot Jupiters in Systems with High Host-star Obliquities. HAMER J.H. and SCHLAUFMAN K.C.
2022PASP..134h2001A viz 63       D     X         2 366 39 Stellar Obliquities in Exoplanetary Systems. ALBRECHT S.H., DAWSON R.I. and WINN J.N.
2023MNRAS.520.1642S 1540 T K A D S   X C       31 9 ~ The study on transiting systems HAT-P-13,
HAT-P-16, and WASP-32 through combining ground-based and TESS photometry.
SUN L., GU S., WANG X., et al.
2022MNRAS.516.6145P 45           X         1 57 1 Comprehensive Bayesian modelling of tidal circularization in open cluster binaries part I: M 35, NGC 6819, and NGC 188. PENEV K.M. and SCHUSSLER J.A.
2023A&A...676A..90R viz 19       D               2 47 ~ The GAPS programme at TNG XLIV. Projected rotational velocities of 273 exoplanet-host stars observed with HARPS-N. RAINER M., DESIDERA S., BORSA F., et al.
2024A&A...682A.136C 320       D     X         7 144 ~ The GAPS Programme at TNG LI. Investigating the correlations between transiting system parameters and host chromospheric activity. CLAUDI R., BRUNO G., FOSSATI L., et al.

goto View the references in ADS