NGTS-3Ab , the SIMBAD biblio

NGTS-3Ab , the SIMBAD biblio (12 results) C.D.S. - SIMBAD4 rel 1.8 - 2024.04.25CEST14:53:37


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Title First 3 Authors
2018MNRAS.478.4720G 815 T   A S   X C       17 2 17 Unmasking the hidden
NGTS-3Ab: a hot Jupiter in an unresolved binary system.
GUNTHER M.N., QUELOZ D., GILLEN 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.
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.
2019MNRAS.488.5232C 17       D               1 10 ~ Classifying exoplanet candidates with convolutional neural networks: application to the Next Generation Transit Survey. CHAUSHEV A., RAYNARD L., GOAD M.R., 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.
2019MNRAS.489.4125V 42           X         1 13 5 NGTS-6b: an ultrashort period hot-Jupiter orbiting an old K dwarf. VINES J.I., JENKINS J.S., ACTON J.S., et al.
2020AJ....159...41T viz 17       D               1 564 ~ Estimating planetary mass with deep learning. TASKER E.J., LANEUVILLE M. and GUTTENBERG N.
2020MNRAS.491.2834C viz 43           X         1 15 ~ NGTS-8b and NGTS-9b: two non-inflated hot Jupiters. COSTES J.C., WATSON C.A., BELARDI C., et al.
2020MNRAS.493..126M 43           X         1 25 19 NGTS-10b: the shortest period hot Jupiter yet discovered. McCORMAC J., GILLEN E., JACKMAN J.A.G., et al.
2021AJ....162..263H viz 17       D               1 346 17 A uniform search for nearby planetary companions to hot Jupiters in TESS data reveals hot Jupiters are still lonely. HORD B.J., COLON K.D., KOSTOV V., et al.
2022ApJ...929...52K 45           X         1 14 8 Mass Loss by Atmospheric Escape from Extremely Close-in Planets. KOSKINEN T.T., LAVVAS P., HUANG C., et al.
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.

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