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Related papers: Ohmic Dissipation in Mini-Neptunes

200 papers

After finding more planets than expected at the shortest period, there has been an effort to explain their numbers by weak tidal friction. However, we find that the strength of tidal dissipation that would produce the occurence distribution…

Earth and Planetary Astrophysics · Physics 2012-11-12 Stuart F. Taylor

In the present series of papers we propose a consistent description of the mass loss process. To study the effects of intrinsic magnetic field of a close-orbit giant exoplanet (so-called Hot Jupiter) on the atmospheric material escape and…

Earth and Planetary Astrophysics · Physics 2015-06-12 I. F. Shaikhislamov , M. L. Khodachenko , Yu. L. Sasunov , H. Lammer , K. G. Kislyakova , N. V. Erkaev

The orbital period ratios of neighbouring sub-Neptunes are distributed asymmetrically near first-order resonances. There are deficits of systems---"troughs" in the period ratio histogram---just short of commensurability, and…

Earth and Planetary Astrophysics · Physics 2020-05-27 Nick Choksi , Eugene Chiang

The intense irradiation received by hot Jupiters suppresses convection in the outer layers of their atmospheres and lowers their cooling rates. "Inflated" hot Jupiters, i.e., those with anomalously large transit radii, require additional…

Earth and Planetary Astrophysics · Physics 2015-05-19 Andrew N. Youdin , Jonathan L. Mitchell

Observations of transiting gas giant exoplanets have revealed a pervasive depletion of methane, which has only recently been identified atmospherically. The depletion is thought to be maintained by disequilibrium processes such as…

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 simulate atmospheric fractionation in escaping planetary atmospheres using IsoFATE, a new open-source numerical model. We expand the parameter space studied previously to planets with tenuous atmospheres that exhibit the greatest helium…

Earth and Planetary Astrophysics · Physics 2024-04-30 Collin Cherubim , Robin Wordsworth , Renyu Hu , Evgenya Shkolnik

In the hot-start core accretion formation model for gas giants, the interior of a planet is usually assumed to be fully convective. By calculating the detailed internal evolution of a planet assuming hot start outer boundary conditions, we…

Earth and Planetary Astrophysics · Physics 2017-09-13 David Berardo , Andrew Cumming

About one out of 200 Sun-like stars has a planet with an orbital period shorter than one day: an ultra-short-period planet (Sanchis-ojeda et al. 2014; Winn et al. 2018). All of the previously known ultra-short-period planets are either hot…

Earth and Planetary Astrophysics · Physics 2020-09-30 James S. Jenkins , Matías R. Díaz , Nicolás T. Kurtovic , Néstor Espinoza , Jose I. Vines , Pablo A. Peña Rojas , Rafael Brahm , Pascal Torres , Pía Cortés-Zuleta , Maritza G. Soto , Eric D. Lopez , George W. King , Peter J. Wheatley , Joshua N. Winn , David R. Ciardi , George Ricker , Roland Vanderspek , David W. Latham , Sara Seager , Jon M. Jenkins , Charles A. Beichman , Allyson Bieryla , Christopher J. Burke , Jessie L. Christiansen , Christopher E. Henze , Todd C. Klaus , Sean McCauliff , Mayuko Mori , Norio Narita , Taku Nishiumi , Motohide Tamura , Jerome Pitogo de Leon , Samuel N. Quinn , Jesus Noel Villaseñor , Michael Vezie , Jack J. Lissauer , Karen A. Collins , Kevin I. Collins , Giovanni Isopi , Franco Mallia , Andrea Ercolino , Cristobal Petrovich , Andrés Jordán , Jack S. Acton , David J. Armstrong , Daniel Bayliss , François Bouchy , Claudia Belardi , Edward M. Bryant , Matthew R. Burleigh , Juan Cabrera , Sarah L. Casewell , Alexander Chaushev , Benjamin F. Cooke , Philipp Eigmüller , Anders Erikson , Emma Foxell , Boris T. Gänsicke , Samuel Gill , Edward Gillen , Maximilian N. Günther , Michael R. Goad , Matthew J. Hooton , James A. G. Jackman , Tom Louden , James McCormac , Maximiliano Moyano , Louise D. Nielsen , Don Pollacco , Didier Queloz , Heike Rauer , Liam Raynard , Alexis M. S. Smith , Rosanna H. Tilbrook , Ruth Titz-Weider , Oliver Turner , Stéphane Udry , Simon. R. Walker , Christopher A. Watson , Richard G. West , Enric Palle , Carl Ziegler , Nicholas Law , Andrew W. Mann

Absorption of high-energy radiation in planetary thermospheres is believed to lead to the formation of planetary winds. The resulting mass-loss rates can affect the evolution, particularly of small gas planets. We present 1D, spherically…

Earth and Planetary Astrophysics · Physics 2016-01-27 M. Salz , S. Czesla , P. C. Schneider , J. H. M. M. Schmitt

Planets intermediate in size between the Earth and Neptune, and orbiting closer to their host stars than Mercury does the Sun, are the most common type of planet revealed by exoplanet surveys over the last quarter century. Results from…

Earth and Planetary Astrophysics · Physics 2021-02-10 Jacob L. Bean , Sean N. Raymond , James E. Owen

We construct models of the structural evolution of super-Earth- and mini-Neptune-type exoplanets with hydrogen-helium envelopes, incorporating radiative cooling and XUV-driven mass loss. We conduct a parameter study of these models,…

Earth and Planetary Astrophysics · Physics 2015-08-06 Alex R. Howe , Adam S. Burrows

This paper presents a consistent description of the formation and the subsequent evolution of gaseous planets, with special attention to short-period, low-mass hot-Neptune planets characteristic of $\mu$ Ara-like systems. We show that core…

Astrophysics · Physics 2009-11-11 I. Baraffe , Y. Alibert , G. Chabrier , W. Benz

Recent discoveries have revealed a population of "popcorn planets" that have masses similar to that of Neptune but radii comparable to Jupiter, leading to exceptionally low bulk densities $\rho_p \lesssim 0.3\,\mathrm{g}\,\mathrm{cm}^{-3}$.…

Earth and Planetary Astrophysics · Physics 2025-11-12 Samuel W. Yee , Shreyas Vissapragada

Tidal dissipation in planetary interiors is one of the key physical mechanisms that drive the evolution of star-planet and planet-moon systems. New constraints are now obtained both in the Solar and exoplanetary systems. Tidal dissipation…

Earth and Planetary Astrophysics · Physics 2014-10-21 M. Guenel , S. Mathis , F. Remus

With the use of long-term numerical simulations, we study the evolution and orbital behavior of cometary nuclei in cold Kuiper belt-like debris disks under the gravitational influence of dwarf planets (DPs); we carry out these simulations…

Earth and Planetary Astrophysics · Physics 2015-09-30 Marco A. Muñoz-Gutiérrez , Barbara Pichardo , Mauricio Reyes-Ruiz , Antonio Peimbert

A significant fraction of super-Earths and sub-Neptunes are thought to experience an extreme loss of volatiles because of atmospheric evaporation in the early stages of their life. Though the mechanisms behind the extreme mass loss are not…

Earth and Planetary Astrophysics · Physics 2023-01-23 Darius Modirrousta-Galian , Jun Korenaga

We investigate the atmosphere, ocean, and crust of neutron stars accreting at rates sufficiently high (typically in excess of the local Eddington limit) to stabilize the burning of accreted hydrogen and helium. For hydrogen-rich accretion…

Astrophysics · Physics 2009-10-30 Edward F. Brown , Lars Bildsten

Among exoplanets, the small-size population constitutes the dominant one, with a diversity of properties and compositions ranging from rocky to gas dominated envelope. While a large fraction of them have masses and radii similar to or…

Earth and Planetary Astrophysics · Physics 2021-01-21 M. Deleuil , D. Pollacco , C. Baruteau , H. Rauer , M. Blanc

We present a search for helium in the upper atmospheres of three sub-Neptune size planets to investigate the origins of these ubiquitous objects. The detection of helium for a low density planet would be strong evidence for the presence of…