GANDOLFI, Davide, Luca FOSSATI, John H. LIVINGSTON, Keivan G. STASSUN, Sascha GRZIWA, Oscar BARRAGAN, Malcolm FRIDLUND, Daria KUBYSHKINA, Carina M. PERSSON, Fei DAI, Kristine W. F. LAM, Simon ALBRECHT, Natalie BATALHA, Paul G. BECK, Anders Bo JUSTESEN, Juan CABRERA, Scott CARTWRIGHT, William D. COCHRAN, Szilard CSIZMADIA, Misty D. DAVIES, Hans J. DEEG, Philipp EIGMUELLER, Michael ENDL, Anders ERIKSON, Massimiliano ESPOSITO, Rafael A. GARCIA, Robert GOEKE, Lucia GONZALEZ-CUESTA, Eike W. GUENTHER, Artie P. HATZES, Diego HIDALGO, Teruyuki HIRANO, Maria HJORTH, Petr KABATH, Emil KNUDSTRUP, Judith KORTH, Jie LI, Rafael LUQUE, Savita MATHUR, Rodriguez Pilar MONTANES, Norio NARITA, David NESPRAL, Prajwal NIRAULA, Grzegorz NOWAK, Enric PALLE, Martin PAETZOLD, Jorge PRIETO-ARRANZ, Heike RAUER, Seth REDFIELD, Ignasi RIBAS, Marek SKARKA, Alexis M. S. SMITH, Pamela ROWDEN, Guillermo TORRES, Eylen Vincent VAN a Michael L. VEZIE. The Transiting Multi-planet System HD15337: Two Nearly Equal-mass Planets Straddling the Radius Gap. ASTROPHYSICAL JOURNAL LETTERS. BRISTOL: IOP PUBLISHING LTD, 2019, roč. 876, č. 2, s. 1-12. ISSN 2041-8205. Dostupné z: https://dx.doi.org/10.3847/2041-8213/ab17d9.
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Základní údaje
Originální název The Transiting Multi-planet System HD15337: Two Nearly Equal-mass Planets Straddling the Radius Gap
Autoři GANDOLFI, Davide (garant), Luca FOSSATI, John H. LIVINGSTON, Keivan G. STASSUN, Sascha GRZIWA, Oscar BARRAGAN, Malcolm FRIDLUND, Daria KUBYSHKINA, Carina M. PERSSON, Fei DAI, Kristine W. F. LAM, Simon ALBRECHT, Natalie BATALHA, Paul G. BECK, Anders Bo JUSTESEN, Juan CABRERA, Scott CARTWRIGHT, William D. COCHRAN, Szilard CSIZMADIA, Misty D. DAVIES, Hans J. DEEG, Philipp EIGMUELLER, Michael ENDL, Anders ERIKSON, Massimiliano ESPOSITO, Rafael A. GARCIA, Robert GOEKE, Lucia GONZALEZ-CUESTA, Eike W. GUENTHER, Artie P. HATZES, Diego HIDALGO, Teruyuki HIRANO, Maria HJORTH, Petr KABATH, Emil KNUDSTRUP, Judith KORTH, Jie LI, Rafael LUQUE, Savita MATHUR, Rodriguez Pilar MONTANES, Norio NARITA, David NESPRAL, Prajwal NIRAULA, Grzegorz NOWAK, Enric PALLE, Martin PAETZOLD, Jorge PRIETO-ARRANZ, Heike RAUER, Seth REDFIELD, Ignasi RIBAS, Marek SKARKA (203 Česká republika, domácí), Alexis M. S. SMITH, Pamela ROWDEN, Guillermo TORRES, Eylen Vincent VAN a Michael L. VEZIE.
Vydání ASTROPHYSICAL JOURNAL LETTERS, BRISTOL, IOP PUBLISHING LTD, 2019, 2041-8205.
Další údaje
Originální jazyk angličtina
Typ výsledku Článek v odborném periodiku
Obor 10308 Astronomy
Stát vydavatele Velká Británie a Severní Irsko
Utajení není předmětem státního či obchodního tajemství
WWW Full Text
Impakt faktor Impact factor: 8.201
Kód RIV RIV/00216224:14310/19:00111913
Organizační jednotka Přírodovědecká fakulta
Doi http://dx.doi.org/10.3847/2041-8213/ab17d9
UT WoS 000467116000007
Klíčová slova anglicky planetary systems; planets and satellites: detection; planets and satellites: fundamental parameters; planets and satellites: individual (HD15337 b & c); stars: fundamental parameters
Štítky rivok
Příznaky Mezinárodní význam, Recenzováno
Změnil Změnila: Mgr. Marie Šípková, DiS., učo 437722. Změněno: 10. 3. 2020 10:30.
Anotace
We report the discovery of a super-Earth and a sub-Neptune transiting the star HD 15337 (TOI-402, TIC 120896927), a bright (V = 9) K1 dwarf observed by the Transiting Exoplanet Survey Satellite (TESS) in Sectors 3 and 4. We combine the TESS photometry with archival High Accuracy Radial velocity Planet Searcher spectra to confirm the planetary nature of the transit signals and derive the masses of the two transiting planets. With an orbital period of 4.8 days, a mass of 7.51(-1.01)(+1.09) M-circle plus and a radius of 1.64 +/- 0.06 R-circle plus, HD 15337 b joins the growing group of short-period super-Earths known to have a rocky terrestrial composition. The sub-Neptune HD 15337 c has an orbital period of 17.2 days, a mass of 8.11(-1.69)(+1.82) M-circle plus, and a radius of 2.39 +/- 0.12 R-circle plus, suggesting that the planet might be surrounded by a thick atmospheric envelope. The two planets have similar masses and lie on opposite sides of the radius gap, and are thus an excellent testbed for planet formation and evolution theories. Assuming that HD 15337 c hosts a hydrogen-dominated envelope, we employ a recently developed planet atmospheric evolution algorithm in a Bayesian framework to estimate the history of the high-energy (extreme ultraviolet and X-ray) emission of the host star. We find that at an age of 150 Myr, the star possessed on average between 3.7 and 127 times the high-energy luminosity of the current Sun.
Návaznosti
EF16_027/0008360, projekt VaVNázev: Postdoc@MUNI
VytisknoutZobrazeno: 18. 9. 2024 22:17