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Astrophysical fluid bodies that orbit close to one another induce tidal distortions and flows that are subject to dissipative processes. The spin and orbital motions undergo a coupled evolution over astronomical timescales, which is…

Solar and Stellar Astrophysics · Physics 2015-06-19 Gordon I. Ogilvie

We provide an 'effective theory' of tidal dissipation in extrasolar planet systems by empirically calibrating a model for the equilibrium tide. The model is valid to high order in eccentricity and parameterised by two constants of bulk…

Solar and Stellar Astrophysics · Physics 2015-05-20 Brad Hansen

Recent discoveries of several transiting planets with clearly non-zero eccentricities and some large inclinations started changing the simple picture of close-in planets having circular and well-aligned orbits. Two major scenarios to form…

Earth and Planetary Astrophysics · Physics 2015-05-19 Soko Matsumura , Stanton J. Peale , Frederic A. Rasio

The spin axis of a rotationally deformed planet is forced to precess about its orbital angular momentum vector, due to the tidal gravity of its host star, if these directions are misaligned. This induces internal fluid motions inside the…

Earth and Planetary Astrophysics · Physics 2016-07-27 Adrian J. Barker

(Abbreviated) We extend the results of our 2021 paper concerning the problem of tidal evolution of a binary system with a rotating primary component with rotation axis arbitrarily inclined with respect to the orbital plane. Only the…

Solar and Stellar Astrophysics · Physics 2023-09-13 Pavel Ivanov , John Papaloizou

We assess the importance of tidal evolution and its interplay with magnetic braking in the population of hot-Jupiter planetary systems. By minimizing the total mechanical energy of a given system under the constraint of stellar angular…

Earth and Planetary Astrophysics · Physics 2015-01-28 C. Damiani , A. F. Lanza

Current observations indicate that the planet formation process often produces multiple planet systems with nearly circular orbits, regular spacing, a narrow range of inclination angles, and similar planetary masses of order $m_{\rm…

Earth and Planetary Astrophysics · Physics 2019-07-10 Fred C. Adams

Observations of hot Jupiters around solar-type stars with very short orbital periods (~day) suggest that tidal dissipation in such stars is not too efficient so that these planets can survive against rapid orbital decay. This is consistent…

Earth and Planetary Astrophysics · Physics 2015-05-30 Dong Lai

We reexamine the popular belief that a telluric planet or satellite on an eccentric orbit can, outside a spin-orbit resonance, be captured in a quasi-static tidal equilibrium called pseudosynchronous rotation. The existence of such…

Earth and Planetary Astrophysics · Physics 2015-06-11 Valeri V. Makarov , Michael Efroimsky

We present a self-consistent model for the tidal evolution of circumbinary planets. Based on the weak-friction model, we derive expressions of the resulting forces and torques considering complete tidal interactions between all the bodies…

Earth and Planetary Astrophysics · Physics 2019-07-10 F. A. Zoppetti , C. Beaugé , A. M. Leiva , H. Folonier

Earth-like planets have anelastic mantles, whereas giant planets may have anelastic cores. As for the fluid parts of a body, the tidal dissipation of such solid regions, gravitationally perturbed by a companion body, highly depends on its…

Earth and Planetary Astrophysics · Physics 2012-08-03 F. Remus , S. Mathis , J. -P. Zahn , V. Lainey

We investigate the secular dynamics of three-body circumbinary systems under the effect of tides. We use the octupolar non-restricted approximation for the orbital interactions, general relativity corrections, the quadrupolar approximation…

Earth and Planetary Astrophysics · Physics 2016-08-12 Alexandre C. M. Correia , Gwenaël Boué , Jacques Laskar

To first approximation, a binary system conserves its angular momentum while it evolves to its state of minimum kinetic energy: circular orbit, all spins aligned, and components rotating in synchronism with the orbital motion. The pace at…

Astrophysics · Physics 2009-11-13 Jean-Paul Zahn

Astronomers do not have a complete picture of the effects of wide-binary companions (semimajor axes greater than 100 AU) on the formation and evolution of exoplanets. We investigate these effects using new data from Gaia EDR3 and the TESS…

Earth and Planetary Astrophysics · Physics 2022-04-20 Sam Christian , Andrew Vanderburg , Juliette Becker , Daniel A. Yahalomi , Logan Pearce , George Zhou , Karen A. Collins , Adam L. Kraus , Keivan G. Stassun , Zoe de Beurs , George R. Ricker , Roland K. Vanderspek , David W. Latham , Joshua N. Winn , S. Seager , Jon M. Jenkins , Lyu Abe , Karim Agabi , Pedro J. Amado , David Baker , Khalid Barkaoui , Zouhair Benkhaldoun , Paul Benni , John Berberian , Perry Berlind , Allyson Bieryla , Emma Esparza-Borges , Michael Bowen , Peyton Brown , Lars A. Buchhave , Christopher J. Burke , Marco Buttu , Charles Cadieux , Douglas A. Caldwell , David Charbonneau , Nikita Chazov , Sudhish Chimaladinne , Kevin I. Collins , Deven Combs , Dennis M. Conti , Nicolas Crouzet , Jerome P. de Leon , Shila Deljookorani , Brendan Diamond , René Doyon , Diana Dragomir , Georgina Dransfield , Zahra Essack , Phil Evans , Akihiko Fukui , Tianjun Gan , Gilbert A. Esquerdo , Michaël Gillon , Eric Girardin , Pere Guerra , Tristan Guillot , Eleanor Kate K. Habich , Andreea Henriksen , Nora Hoch , Keisuke I Isogai , Emmanuël Jehin , Eric L. N. Jensen , Marshall C. Johnson , John H. Livingston , John F. Kielkopf , Kingsley Kim , Kiyoe Kawauchi , Vadim Krushinsky , Veronica Kunzle , Didier Laloum , Dominic Leger , Pablo Lewin , Franco Mallia , Bob Massey , Mayuko Mori , Kim K. McLeod , Djamel Mékarnia , Ismael Mireles , Nikolay Mishevskiy , Motohide Tamura , Felipe Murgas , Norio Narita , Ramon Naves , Peter Nelson , Hugh P. Osborn , Enric Palle , Hannu Parviainen , Peter Plavchan , Francisco J. Pozuelos , Markus Rabus , Howard M. Relles , Cristina Rodríguez López , Samuel N. Quinn , Francois-Xavier Schmider , Joshua E. Schlieder , Richard P. Schwarz , Avi Shporer , Laurie Sibbald , Gregor Srdoc , Caitlin Stibbards , Hannah Stickler , Olga Suarez , Chris Stockdale , Thiam-Guan Tan , Yuka Terada , Amaury Triaud , Rene Tronsgaard , William C. Waalkes , Gavin Wang , Noriharu Watanabe , Marie-Sainte Wenceslas , Geof Wingham , Justin Wittrock , Carl Ziegler

There is an intriguing and growing population of Neptune-sized planets with stellar obliquities near $\sim90^{\circ}$. One previously proposed formation pathway is a disk-driven resonance, which can take place at the end stages of planet…

Earth and Planetary Astrophysics · Physics 2024-10-04 Emma Louden , Sarah Millholland

We study the orbital evolution of a three planet system with masses in the super-Earth regime resulting from the action of tides on the planets induced by the central star which cause orbital circularization. We consider systems either in…

Earth and Planetary Astrophysics · Physics 2015-06-19 John C. B. Papaloizou

We present here in full details the linear secular theory with tidal damping that was used to constraint the fit of the HD10180 planetary system in (Lovis et al. 2011). The theory is very general and can provide some intuitive understanding…

Earth and Planetary Astrophysics · Physics 2015-05-30 Jacques Laskar , Gwenaël Boué , Alexandre C. M. Correia

We investigate the possibility that the large orbital eccentricity of the transiting Neptune-mass planet Gliese 436b is maintained in the face of tidal dissipation by a second planet in the system. We find that the currently observed…

Earth and Planetary Astrophysics · Physics 2011-02-11 Konstantin Batygin , Gregory Laughlin , Stefano Meschiari , Eugenio Rivera , Steve Vogt , Paul Butler

Tidal torques can alter the spins of tidally interacting stars and planets, usually over shorter timescales than the tidal damping of orbital separations or eccentricities. Simple tidal models predict that, in eccentric binary or planetary…

Solar and Stellar Astrophysics · Physics 2024-07-16 Janosz W. Dewberry

We perform numerical simulations of the TRAPPIST-1 system of seven exoplanets orbiting a nearby M dwarf, starting with a previously suggested stable configuration. The long-term stability of this configuration is confirmed, but the motion…

Earth and Planetary Astrophysics · Physics 2018-05-01 Valeri V. Makarov , Ciprian T. Berghea , Michael Efroimsky