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Massive cores of the giant planets are thought to have formed in a gas disk by accretion of pebble-size particles whose accretional cross-section is enhanced by aerodynamic gas drag [1][2]. A commonly held view is that the terrestrial…

Earth and Planetary Astrophysics · Physics 2021-09-24 M. Brož , O. Chrenko , D. Nesvorný , N. Dauphas

Our Solar system is almost entirely devoid of material interior to Mercury's orbit, in sharp contrast to the multiple Earth masses of material commonly residing within the analogous region of extrasolar planetary systems. Recent work has…

Earth and Planetary Astrophysics · Physics 2018-12-19 Christopher Spalding

Exoplanet atmospheres are known to be vulnerable to mass loss through irradiation by stellar X-ray and extreme-ultraviolet emission. We investigate how this high-energy irradiation varies with time by combining an empirical relation…

Earth and Planetary Astrophysics · Physics 2020-12-02 George W. King , Peter J. Wheatley

The increasing number of super-Earths close to their host stars revealed a scarcity of close-in small planets with 1.5-2.0$\,R_\oplus$ in the radius distribution of ${\it Kepler}$ planets. The atmospheric escape of super-Earths by…

Earth and Planetary Astrophysics · Physics 2022-04-06 Naho Fujita , Yasunori Hori , Takanori Sasaki

In order to test planetary accretion and differentiation scenarios, we integrated a multistage core-mantle differentiation model with N-body accretion simulations. Impacts between embryos and planetesimals result in magma ocean formation…

This work reviews the long-term evolution of the atmosphere of Venus, and modulation of its composition by interior-exterior cycling. The formation and evolution of Venus's atmosphere, leading to contemporary surface conditions, remain…

There is growing observational and theoretical evidence suggesting that atmospheric escape is a key driver of planetary evolution. Commonly, planetary evolution models employ simple analytic formulae (e.g., energy limited escape) that are…

During their evolution, short-period exoplanets may lose envelope mass through atmospheric escape owing to intense XUV (X-ray and extreme ultraviolet) radiation from their host stars. Roche-lobe overflow induced by orbital evolution or…

Earth and Planetary Astrophysics · Physics 2015-06-18 Hiroyuki Kurokawa , Taishi Nakamoto

The atmospheres of close-in planets are strongly influenced by mass loss driven by the high-energy (X-ray and extreme ultraviolet, EUV) irradiation of the host star, particularly during the early stages of evolution. We recently developed a…

Earth and Planetary Astrophysics · Physics 2020-01-08 D. Kubyshkina , L. Fossati , A. J. Mustill , P. E. Cubillos , M. B. Davies , N. V. Erkaev , C. P. Johnstone , K. G. Kislyakova , H. Lammer , M. Lendl , P. Odert

The amount and distribution of heavy elements in Jupiter gives indications on the process of its formation and evolution. Core mass and metallicity predictions however depend on the equations of state used, and on model assumptions. We…

Earth and Planetary Astrophysics · Physics 2012-05-04 Nadine Nettelmann , Andreas Becker , Bastian Holst , Ronald Redmer

The recently discovered low-density "super-Earths" Kepler-11b, Kepler-11f, Kepler-11d, Kepler-11e, and planets such as GJ 1214b represent most likely planets which are surrounded by dense H/He envelopes or contain deep H2O oceans also…

Earth and Planetary Astrophysics · Physics 2015-06-12 N. V. Erkaev , H. Lammer , P. Odert , Yu. N. Kulikov , K. G. Kislyakova , M. L. Khodachenko , M. Güdel , A. Hanslmeier , H. Biernat

After Earth's origin, our host star, the Sun, was shining 20 to 25 percent less brightly than today. Without greenhouse-like conditions to warm the atmosphere, our early planet would have been an ice ball and life may never have evolved.…

We explore atmospheric escape from close-in exoplanets with the highest mass loss rates. First, we locate the transition from stellar X-ray and UV-driven escape to rapid Roche lobe overflow, which occurs once the 10-100 nbar pressure level…

Earth and Planetary Astrophysics · Physics 2022-04-20 Tommi Koskinen , Panayotis Lavvas , Chenliang Huang , Galen Bergsten , Rachel Fernandes , Mitchell Young

The extreme conditions in the early stages of planetary evolution are thought to shape its subsequent development. High internal temperatures from giant impacts can provide sufficient energy to drive extreme volatile loss, with hydrogen…

Earth and Planetary Astrophysics · Physics 2025-10-15 Darius Modirrousta-Galian , Jun Korenaga

We study the origin and escape of catastrophically outgassed volatiles (H$_2$O, CO$_2$) from exomoons with Earth-like densities and masses of $0.1M_{\oplus}$, $0.5M_{\oplus}$ and $1M_{\oplus}$ orbiting an extra-solar gas giant inside the…

Earth and Planetary Astrophysics · Physics 2015-06-23 H. Lammer , S. -C. Schiefer , I. Juvan , P. Odert , N. V. Erkaev , C. Weber , K. G. Kislyakova , M. Güdel , G. Kirchengast , A. Hanslmeier

Terrestrial-like exoplanets may obtain atmospheres from three primary sources: Capture of nebular gases, degassing during accretion, and degassing from subsequent tectonic activity. Here we model degassing during accretion to estimate the…

Astrophysics · Physics 2009-11-13 L. Elkins-Tanton , S. Seager

The composition of Jupiter and the primordial distribution of the heavy elements are determined by its formation history. As a result, in order to constrain the primordial internal structure of Jupiter the growth of the core and the…

Earth and Planetary Astrophysics · Physics 2017-03-08 Michael Lozovsky , Ravit Helled , Eric D. Rosenberg , Peter Bodenheimer

Context. M dwarfs are key targets for terrestrial exoplanet studies, with prospects for atmospheric spectroscopy. However, strong stellar magnetic activity and frequent flaring require modelling efforts to assess their impact on planetary…

Earth and Planetary Astrophysics · Physics 2026-05-11 E. Mamonova , K. Herbst , V. Kofman , O. Ozgurel , A. F. Kowalski , S. Wedemeyer , S. C. Werner

Exoplanets orbiting M-dwarfs within habitable zones are exposed to stellar environments more extreme than that terrestrial planets experience in our Solar System, which can significantly impact the atmospheres of the exoplanets and affect…

Earth and Planetary Astrophysics · Physics 2022-01-05 Yuni Lee , Chuanfei Dong , Valeriy Tenishev

Terrestrial planets formed within gaseous protoplanetary disks can accumulate significant hydrogen envelopes. The evolution of such an atmosphere due to XUV driven evaporation depends on the activity evolution of the host star, which itself…

Earth and Planetary Astrophysics · Physics 2016-08-06 C. P. Johnstone , M. Güdel , A. Stökl , H. Lammer , L. Tu , K. G. Kislyakova , T. Lüftinger , P. Odert , N. V. Erkaev , E. A. Dorfi
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