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Related papers: Giant planet formation in Palatini gravity

200 papers

In the standard model of core accretion, the cores of the giant planets form by the accretion of planetesimals. In this scenario, the evolution of the planetesimal population plays an important role in the formation of massive cores.…

Earth and Planetary Astrophysics · Physics 2015-07-15 O. M. Guilera , D. Swoboda , Y. Alibert , G. C. de Elía , P. J. Santamaría , A. Brunini

Planet formation is directly linked to the birthing environment that protoplanetary disks provide. The disk properties determine whether a giant planet will form and how it evolves. The number of exoplanet and disk observations is…

Earth and Planetary Astrophysics · Physics 2023-11-08 Sofia Savvidou , Bertram Bitsch

(Abridged) We consider models of gas giant planets forming in protoplanetary disks consisting of solid cores with gaseous envelopes in contact with their critical Hill spheres while accreting gas from the surrounding disk.We suppose the…

Astrophysics · Physics 2009-11-10 John C. B. Papaloizou , Richard P. Nelson

The recent detection of planets around very low mass stars raises the question of the formation, composition and potential habitability of these objects. We use planetary system formation models to infer the properties, in particular their…

Earth and Planetary Astrophysics · Physics 2017-02-01 Yann Alibert , Willy Benz

In the core-accretion model, gas-giant planets form solid cores which then accrete gaseous envelopes. Tidal interactions with disk gas cause a core to undergo inward type-I migration in 10^4 to 10^5 years. Cores must form faster than this…

Astrophysics · Physics 2009-11-11 J. E. Chambers

We investigate gas accretion onto a protoplanet, by considering the thermal effect of gas in three-dimensional hydrodynamical simulations, in which the wide region from a protoplanetary gas disk to a Jovian radius planet is resolved using…

Solar and Stellar Astrophysics · Physics 2015-05-18 Masahiro N. Machida , Eiichiro Kokubo , Shu-ichiro Inutsuka , Tomoaki Matsumoto

Recent observations of protoplanetary disks have revealed ring-like structures that can be associated to pressure maxima. Pressure maxima are known to be dust collectors and planet migration traps. Most of planet formation works are based…

Earth and Planetary Astrophysics · Physics 2020-10-14 O. M. Guilera , Zs. Sándor , M. P. Ronco , J. Venturini , M. M. Miller Bertolami

The majority of discovered exoplanetary systems harbour a new class of planets, bodies typically several times more massive than Earth but orbiting their host stars well inside the orbit of Mercury. The origin of these close-in super-Earths…

Earth and Planetary Astrophysics · Physics 2016-11-15 Niraj K. Inamdar , Hilke E. Schlichting

The apparent dependence of detection frequency of extrasolar planets on the metallicity of their host stars is investigated with Monte Carlo simulations using a deterministic core-accretion planet formation model. According to this model,…

Astrophysics · Physics 2017-10-18 S. Ida , D. N. C. Lin

During their formation, planets form large, hot atmospheres due to the ongoing accretion of solids. It has been customary to assume that all solids end up at the center constituting a "core" of refractory materials, whereas the envelope…

Earth and Planetary Astrophysics · Physics 2021-03-31 Chris Ormel , Allona Vazan , Marc Brouwers

The goal of this work is to investigate Jupiter's growth focusing on the amount of heavy elements accreted by the planet, and its comparison with recent structure models. Our model assumes an initial core growth dominated by pebble…

Earth and Planetary Astrophysics · Physics 2020-02-05 Julia Venturini , Ravit Helled

To understand giant planet formation, we need to focus on host stars close to $1.7\ \rm M_{\odot}$, where the occurrence rate of these planets is the highest. In this initial study, we carry out pebble-driven core accretion planet formation…

Earth and Planetary Astrophysics · Physics 2023-10-30 Heather Johnston , Olja Panic , Beibei Liu

In this paper we investigate the formation of Uranus and Neptune, according to the core-nucleated accretion model, considering formation locations ranging from 12 to 30 AU from the Sun, and with various disk solid-surface densities and core…

Earth and Planetary Astrophysics · Physics 2015-06-19 Ravit Helled , Peter Bodenheimer

An unsolved issue in the standard core accretion model for gaseous planet formation is how kilometre-sized planetesimals form from, initially, micron-sized dust grains. Solid growth beyond metre sizes can be difficult both because the…

Astrophysics · Physics 2009-11-11 W. K. M. Rice , G. Lodato , J. E. Pringle , P. J. Armitage , I. A. Bonnell

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…

Earth and Planetary Astrophysics · Physics 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

The origin of close-in giant planets is a key open question in planet formation theory. The two leading models are (i) formation at the outer disk followed by migration and (ii) in situ formation. In this work we determine the atmospheric…

Earth and Planetary Astrophysics · Physics 2022-10-07 Henrik Knierim , Sho Shibata , Ravit Helled

Here we show preliminary calculations of the cooling and contraction of a 2 MJ planet. These calculations, which are being extended to 1-10 MJ, differ from other published "cooling tracks" in that they include a core accretion-gas capture…

Astrophysics · Physics 2016-08-30 J. J. Fortney , M. S. Marley , O. Hubickyj , P. Bodenheimer , J. J. Lissauer

Recent structure models of Jupiter that match Juno gravity data suggest that the planet harbours an extended region in its deep interior that is enriched in heavy elements, a so-called dilute/fuzzy core. This finding raises the question of…

Earth and Planetary Astrophysics · Physics 2020-07-01 Simon Müller , Ravit Helled , Andrew Cumming

We review the basic dynamics and accretion of planetesimals by showing N-body simulations. The orbits of planetesimals evolve through two-body gravitational relaxation: viscous stirring increases the random velocity and dynamical friction…

Earth and Planetary Astrophysics · Physics 2012-12-10 Eiichiro Kokubo , Shigeru Ida

In the core accretion model of giant planet formation, a solid protoplanetary core begins to accrete gas directly from the nebula when its mass reaches about 5 earth masses. The protoplanet has at most a few million years to reach runaway…

Earth and Planetary Astrophysics · Physics 2013-07-09 Jens Teiser , Sarah E. Dodson-Robinson
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