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It has been known for a decade that hot stars with hot Jupiters tend to have high obliquities. Less is known about the degree of spin-orbit alignment for hot stars with other kinds of planets. Here, we re-assess the obliquities of hot…

The evolution of exoplanetary systems with a close-in planet is ruled by the tides mutually raised on the two bodies and by the magnetic braking of the host star. This paper deals with consequences of this evolution and some features that…

Earth and Planetary Astrophysics · Physics 2023-07-05 S. Ferraz-Mello , C. Beaugé

The findings of more than 350 extrasolar planets, most of them nontransiting Hot Jupiters, have revealed correlations between the metallicity of the main-sequence (MS) host stars and planetary incidence. This connection can be used to…

Earth and Planetary Astrophysics · Physics 2014-11-20 René Heller , Dimitris Mislis , John Antoniadis

Hot stars with hot Jupiters have a wide range of obliquities, while cool stars with hot Jupiters tend to have low obliquities. An enticing explanation for this pattern is tidal realignment of the cool host stars, although this explanation…

Earth and Planetary Astrophysics · Physics 2021-06-23 Kassandra R. Anderson , Joshua N. Winn , Kaloyan Penev

Kepler-730 is a planetary system hosting a statistically validated hot Jupiter in a 6.49-day orbit and an additional transiting candidate in a 2.85-day orbit. We use spectroscopic radial velocities from the APOGEE-2N instrument, Robo-AO…

Recent studies have proposed that most warm Jupiters (WJs, giant planets with semi-major axes in the range of 0.1-1 AU) probably form in-situ, or arrive in their observed orbits through disk migration. However, both in-situ formation and…

Earth and Planetary Astrophysics · Physics 2017-10-09 Kassandra R. Anderson , Dong Lai

The stars that populate the solar neighbourhood were formed in stellar clusters. Through N-body simulations of these clusters, we measure the rate of close encounters between stars. By monitoring the interaction histories of each star, we…

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…

Earth and Planetary Astrophysics · Physics 2015-05-19 Joshua N. Winn , Daniel Fabrycky , Simon Albrecht , John Asher Johnson

Close-in giant planets (e.g. ``Hot Jupiters'') are thought to form far from their host stars and migrate inward, through the terrestrial planet zone, via torques with a massive gaseous disk. Here we simulate terrestrial planet growth during…

Astrophysics · Physics 2009-11-11 Sean N. Raymond , Avi M. Mandell , Steinn Sigurdsson

The existence of hot Jupiters has challenged theories of planetary formation since the first extrasolar planets were detected. Giant planets are generally believed to form far from their host stars, where volatile materials like water exist…

Earth and Planetary Astrophysics · Physics 2017-11-29 Juliette C. Becker , Andrew Vanderburg , Fred C. Adams , Tali Khain , Marta Bryan

Aims. The connection between initial disc conditions and final orbital and physical properties of planets is not well-understood. In this paper, we numerically study the formation of planetary systems via pebble accretion and investigate…

Earth and Planetary Astrophysics · Physics 2021-06-23 Soko Matsumura , Ramon Brasser , Shigeru Ida

Exoplanets display incredible diversity, from planetary system architectures around Sun-like stars that are very different to our Solar System, to planets orbiting post-main sequence stars or stellar remnants. Recently the B-star Exoplanet…

Earth and Planetary Astrophysics · Physics 2022-09-09 Richard J. Parker , Emma C. Daffern-Powell

As of August 2019, among the more than 4000 confirmed exoplanets, only one has been detected in a globular cluster (GC) M4. The scarce of exoplanet detections motivates us to employ direct $N$-body simulations to investigate the dynamical…

Earth and Planetary Astrophysics · Physics 2019-09-11 Maxwell Xu Cai , S. Portegies Zwart , M. B. N. Kouwenhoven , Rainer Spurzem

Giant planets are expected to predominantly form beyond the water ice line and occasionally undergo inward migration. Unlike hot Jupiters, which can result from high-eccentricity tidal migration, warm Jupiters between 0.1-1 AU…

Earth and Planetary Astrophysics · Physics 2025-10-06 Marvin Morgan , Brendan P. Bowler , Quang H. Tran , Robert A. Wittenmyer , Duncan J. Wright , George Zhou , Tyler R. Fairnington

Young stars form on a wide range of scales, producing aggregates and clusters with various degrees of gravitational self-binding. The loose aggregates have a hierarchical structure in both space and time that resembles interstellar…

Astrophysics · Physics 2007-05-23 B. G. Elmegreen , Y. N. Efremov , R. E. Pudritz , H. Zinnecker

We investigate the giant planet-metallicity correlation for a homogeneous, unbiased set of 217 hot Jupiters taken from nearly 15 years of wide-field ground-based surveys. We compare the host star metallicity to that of field stars using the…

Earth and Planetary Astrophysics · Physics 2020-01-08 Ares Osborn , Daniel Bayliss

Young massive clusters are as young as open clusters but more massive and compact compared with typical open clusters. The formation process of young massive clusters is still unclear, and it is an open question whether the formation…

Astrophysics of Galaxies · Physics 2015-06-23 Michiko S. Fujii

To date, only a handful of binary star systems are known with at least one confirmed planet orbiting each star. Such systems, however, offer a unique perspective on the stochasticity intrinsic to planet formation and evolution --…

Earth and Planetary Astrophysics · Physics 2025-12-23 Yurou Liu , Tiger Lu , Malena Rice

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

We present three-dimensional atmospheric circulation models of a hypothetical "warm Jupiter" planet, for a range of possible obliquities from 0-90 degrees. We model a Jupiter-mass planet on a 10-day orbit around a Sun-like star, since this…

Earth and Planetary Astrophysics · Physics 2017-09-13 Emily Rauscher
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