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CoRoT-27 , the SIMBAD biblio (13 results) | C.D.S. - SIMBAD4 rel 1.8 - 2023.04.02CEST04:50:30 |
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 |
---|---|---|---|---|---|---|---|---|---|
2014A&A...562A.140P | 397 | K | X C | 9 | 9 | 13 |
Transiting exoplanets from the CoRoT space mission. XXV. CoRoT-27b: a massive and dense planet on a short-period orbit. |
PARVIAINEN H., GANDOLFI D., DELEUIL M., et al. | |
2015A&A...574A..39D ![]() |
56 | D | X | 2 | 113 | 28 | Evolution of angular-momentum-losing exoplanetary systems. Revisiting Darwin stability. | DAMIANI C. and LANZA A.F. | |
2015ApJ...807...78F | 282 | A | D | S X C | 6 | 20 | 20 | Interplay of tidal evolution and stellar wind braking in the rotation of stars hosting massive close-in planets. | FERRAZ-MELLO S., TADEU DOS SANTOS M., FOLONIER H., et al. |
2017A&A...602A.107B ![]() |
16 | D | 2 | 476 | 14 | 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 ![]() |
16 | D | 2 | 2500 | 14 | Observational evidence for two distinct giant planet populations. | SANTOS N.C., ADIBEKYAN V., FIGUEIRA P., et al. | ||
2018ApJ...856..155G | 100 | D | C | 7 | 149 | ~ | Giant planets: good neighbors for habitable worlds? | GEORGAKARAKOS N., EGGL S. and DOBBS-DIXON I. | |
2019MNRAS.483..824R | 613 | T K | D | X C | 13 | 14 | ~ |
Transit analysis of the CoRoT-5, CoRoT-8, CoRoT-12, CoRoT-18, CoRoT-20, and CoRoT-27 systems with combined ground- and space-based photometry. |
RAETZ S., HERAS A.M., FERNANDEZ M., et al. |
2019AJ....158..190H ![]() |
17 | D | 1 | 343 | ~ | Hot Jupiters are destroyed by tides while their host stars are on the main sequence. | HAMER J.H. and SCHLAUFMAN K.C. | ||
2020ApJ...890...23L ![]() |
17 | D | 1 | 4935 | ~ | 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....160..133M | 17 | D | 1 | 71 | ~ | TOI 694b and TIC 220568520b: two low-mass companions near the hydrogen-burning mass limit orbiting Sun-like stars. | MIRELES I., SHPORER A., GRIEVES N., et al. | ||
2021A&A...645A...7K ![]() |
18 | D | 1 | 1569 | ~ | 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 ![]() |
18 | D | 1 | 2175 | ~ | 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. | ||
2021ApJ...919..138T | 18 | D | 1 | 531 | ~ | Further evidence for tidal spin-up of hot Jupiter host stars. | TEJADA AREVALO R.A., WINN J.N. and ANDERSON K.R. |
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