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We analyse the potential migration of massive planets forming far away from an inner planetary system. For this, we follow the dynamical evolution of the orbital elements of a massive planet undergoing a dissipative process with a gas disc…

地球与行星天体物理 · 物理学 2009-11-16 Pau Amaro-Seoane , Ignasi Ribas , Ulf Loeckmann , Holger Baumgardt

Ultra-hot Jupiters, an extreme class of planets not found in our solar system, provide a unique window into atmospheric processes. The extreme temperature contrasts between their day- and night-sides pose a fundamental climate puzzle: how…

Numerical hydrodynamics calculations are performed to determine conditions under which giant planet eccentricities can be excited by parent gas disks. Unlike in other studies, Jupiter-mass planets are found to have their eccentricities…

地球与行星天体物理 · 物理学 2015-10-21 Paul C. Duffell , Eugene Chiang

Short period planets are subject to intense energetic irradiations from their stars. It has been shown that this can lead to significant atmospheric mass-loss and create smaller mass planets. Here, we analyse whether the evaporation…

地球与行星天体物理 · 物理学 2015-05-30 Gwenaël Boué , Pedro Figueira , Alexandre C. M. Correia , Nuno C. Santos

High-eccentricity migration is an important channel for the formation of hot Jupiters (HJs). In particular, Lidov-Kozai (LK) oscillations of orbital eccentricity/inclination induced by a distant planetary or stellar companion, combined with…

地球与行星天体物理 · 物理学 2019-02-13 Michelle Vick , Dong Lai , Kassandra R. Anderson

Through tidal dissipation in a slowly spinning host star the orbits of many hot Jupiters may decay down to the Roche limit. We expect that in most cases the ensuing mass transfer will be stable. Using detailed numerical calculations we find…

地球与行星天体物理 · 物理学 2015-06-22 Francesca Valsecchi , Frederic A. Rasio , Jason H. Steffen

Statistical analyses from exoplanet surveys around low-mass stars indicate that super-Earth and Neptune-mass planets are more frequent than gas giants around such stars, in agreement with core accretion theory of planet formation. Using…

地球与行星天体物理 · 物理学 2019-10-16 J. C. Morales , A. J. Mustill , I. Ribas , M. B. Davies , A. Reiners , F. F. Bauer , D. Kossakowski , E. Herrero , E. Rodríguez , M. J. López-González , C. Rodríguez-López , V. J. S. Béjar , L. González-Cuesta , R. Luque , E. Pallé , M. Perger , D. Baroch , A. Johansen , H. Klahr , C. Mordasini , G. Anglada-Escudé , J. A. Caballero , M. Cortés-Contreras , S. Dreizler , M. Lafarga , E. Nagel , V. M. Passegger , S. Reffert , A. Rosich , A. Schweitzer , L. Tal-Or , T. Trifonov , M. Zechmeister , A. Quirrenbach , P. J. Amado , E. W. Guenther , H. -J. Hagen , T. Henning , S. V. Jeffers , A. Kaminski , M. Kürster , D. Montes , W. Seifert , F. J. Abellán , M. Abril , J. Aceituno , F. J. Aceituno , F. J. Alonso-Floriano , M. Ammler-von Eiff , R. Antona , B. Arroyo-Torres , M. Azzaro , D. Barrado , S. Becerril-Jarque , D. Benítez , Z. M. Berdiñas , G. Bergond , M. Brinkmöller , C. del Burgo , R. Burn , R. Calvo-Ortega , J. Cano , M. C. Cárdenas , C. Cardona Guillén , J. Carro , E. Casal , V. Casanova , N. Casasayas-Barris , P. Chaturvedi , C. Cifuentes , A. Claret , J. Colomé , S. Czesla , E. Díez-Alonso , R. Dorda , A. Emsenhuber , M. Fernández , A. Fernández-Martín , I. M. Ferro , B. Fuhrmeister , D. Galadí-Enríquez , I. Gallardo Cava , M. L. García Vargas , A. Garcia-Piquer , L. Gesa , E. González-Álvarez , J. I. González Hernández , R. González-Peinado , J. Guàrdia , A. Guijarro , E. de Guindos , A. P. Hatzes , P. H. Hauschildt , R. P. Hedrosa , I. Hermelo , R. Hernández Arabi , F. Hernández Otero , D. Hintz , G. Holgado , A. Huber , P. Huke , E. N. Johnson , E. de Juan , M. Kehr , J. Kemmer , M. Kim , J. Klüter , A. Klutsch , F. Labarga , N. Labiche , S. Lalitha , M. Lampón , L. M. Lara , R. Launhardt , F. J. Lázaro , J. -L. Lizon , M. Llamas , N. Lodieu , M. López del Fresno , J. F. López Salas , J. López-Santiago , H. Magán Madinabeitia , U. Mall , L. Mancini , H. Mandel , E. Marfil , J. A. Marín Molina , E. L. Martín , P. Martín-Fernández , S. Martín-Ruiz , H. Martínez-Rodríguez , C. J. Marvin , E. Mirabet , A. Moya , V. Naranjo , R. P. Nelson , L. Nortmann , G. Nowak , A. Ofir , J. Pascual , A. Pavlov , S. Pedraz , D. Pérez Medialdea , A. Pérez-Calpena , M. A. C. Perryman , O. Rabaza , A. Ramón Ballesta , R. Rebolo , P. Redondo , H. -W. Rix , F. Rodler , A. Rodríguez Trinidad , S. Sabotta , S. Sadegi , M. Salz , E. Sánchez-Blanco , M. A. Sánchez Carrasco , A. Sánchez-López , J. Sanz-Forcada , P. Sarkis , L. F. Sarmiento , S. Schäfer , M. Schlecker , J. H. M. M. Schmitt , P. Schöfer , E. Solano , A. Sota , O. Stahl , S. Stock , T. Stuber , J. Stürmer , J. C. Suárez , H. M. Tabernero , S. M. Tulloch , G. Veredas , J. I. Vico-Linares , F. Vilardell , K. Wagner , J. Winkler , V. Wolthoff , F. Yan , M. R. Zapatero Osorio

Stellar companions can influence the formation and evolution of planetary systems, but there are currently few observational constraints on the properties of planet-hosting binary star systems. We search for stellar companions around 77…

Gas giant planets may form early-on during the evolution of protostellar discs, while these are relatively massive. We study how Jupiter-mass planet-seeds (termed protoplanets) evolve in massive, but gravitationally stable (Q>1.5), discs…

地球与行星天体物理 · 物理学 2018-04-18 Dimitris Stamatellos , Shu-ichiro Inutsuka

Most studies concerning the growth and evolution of massive planets focus either on their accretion or their migration only. In this work we study both processes concurrently to investigate how they might mutually affect each other. We…

地球与行星天体物理 · 物理学 2017-02-08 Christoph Dürmann , Wilhelm Kley

The extremely close proximity of hot Jupiters to their parent stars has dramatically affected both their atmospheres and interiors, inflating them to up to twice the radius of Jupiter. The physical mechanism responsible for this inflation…

地球与行星天体物理 · 物理学 2025-12-24 Daniel P. Thorngren

Transition disks form a special class of protoplanetary disks that are characterized by a deficiency of disk material close to the star. In a subgroup, inner holes in these disks can stretch out to a few tens of au while there is still mass…

地球与行星天体物理 · 物理学 2020-11-11 Thomas Rometsch , Peter J. Rodenkirch , Wilhelm Kley , Cornelis P. Dullemond

Models of terrestrial planet formation in the presence of a migrating giant planet have challenged the notion that hot-Jupiter systems lack terrestrial planets. We briefly review this issue and suggest that hot-Jupiter systems should be…

天体物理学 · 物理学 2007-10-22 Martyn J. Fogg , Richard P. Nelson

From wispy gas giants on the verge of disruption to tiny rocky bodies already falling apart, short-period exoplanets pose a severe puzzle to theories of planet formation and orbital evolution. By far most of the planets known beyond the…

地球与行星天体物理 · 物理学 2018-03-29 Brian Jackson , Elisabeth Adams , René Heller , Michael Endl

We show that stars with transiting planets for which the stellar obliquity is large are preferentially hot (T_eff > 6250 K). This could explain why small obliquities were observed in the earliest measurements, which focused on relatively…

地球与行星天体物理 · 物理学 2015-05-19 Joshua N. Winn , Daniel Fabrycky , Simon Albrecht , John Asher Johnson

Efforts to characterize extrasolar giant planet (EGP) atmospheres have so far emphasized planets within 0.05 AU of their stars. Despite this focus, known EGPs populate a continuum of orbital separations from canonical hot Jupiter values…

地球与行星天体物理 · 物理学 2015-02-12 Adam P. Showman , Nikole K. Lewis , Jonathan J. Fortney

We present the results of hydrodynamic simulations of the formation and subsequent orbital evolution of giant planets embedded in a circumbinary disc. We assume that a 20 earth masses core has migrated to the edge of the inner cavity formed…

天体物理学 · 物理学 2009-11-13 Arnaud Pierens , Richard P. Nelson

Firstly, we study the final masses of giant planets growing in protoplanetary disks through capture of disk gas, by employing an empirical formula for the gas capture rate and a shallow disk gap model, which are both based on hydrodynamical…

地球与行星天体物理 · 物理学 2016-06-01 Takayuki Tanigawa , Hidekazu Tanaka

High-eccentricity migration is a likely formation mechanism for many observed hot Jupiters, particularly those with a large misalignment between the stellar spin axis and orbital angular momentum axis of the planet. In one version of…

地球与行星天体物理 · 物理学 2023-02-08 Michelle Vick , Yubo Su , Dong Lai

The hundreds of multiple planetary systems discovered by the \textit{Kepler} mission are typically observed to reside in close-in ($\lesssim0.5$ AU), low-eccentricity, and low-inclination orbits. We run N-body experiments to study the…

地球与行星天体物理 · 物理学 2017-04-19 Chelsea X. Huang , Cristobal Petrovich , Emily Deibert