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Extreme ultraviolet (EUV) radiations (10--117 nm) from host stars play important roles in the ionization, heating, and mass loss from exoplanet atmospheres. Together with the host star's Lyman-alpha and far-UV (117--170 nm) radiation, EUV…

Solar and Stellar Astrophysics · Physics 2015-06-17 Jeffrey L. Linsky , Juan Fontenla , Kevin France

By varying the profiles of stellar extreme ultraviolet (EUV) spectral energy distribution (SED), we tested the influences of stellar EUV SEDs on the physical and chemical properties of the escaping atmosphere. We apply our model to study…

Earth and Planetary Astrophysics · Physics 2016-02-17 J. H. Guo , Lotfi Ben-Jaffel

Correct estimates of stellar extreme ultraviolet (EUV; 100 - 1170 \AA) flux are important for studying the photochemistry and stability of exoplanet atmospheres, as EUV radiation ionizes hydrogen and contributes to the heating, expansion,…

Solar and Stellar Astrophysics · Physics 2020-01-08 Sarah Peacock , Travis Barman , Evgenya Shkolnik , Peter Hauschildt , E. Baron , Birgit Fuhrmeister

The chemical and mass evolution of exoplanet atmospheres is shaped by their specific X-ray through ultraviolet (5 - 3200 Angstroms) irradiance history. X-ray and EUV (5 - 911 Angstroms) radiation largely contributes to atmospheric heating…

Identifying Earth-like planets outside out solar system is a leading research goal in astronomy, but determining if candidate planets have atmospheres, and more importantly if they can retain atmospheres, is still out of reach. In this…

Earth and Planetary Astrophysics · Physics 2025-09-01 Lukas Hanson , Ofer Cohen , Aaron Ridley , Alex Glocer

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

Context: The current distribution of planet mass vs. incident stellar X-ray flux supports the idea that photoevaporation of the atmosphere may take place in close-in planets. Integrated effects have to be accounted for. A proper calculation…

Earth and Planetary Astrophysics · Physics 2015-05-28 J. Sanz-Forcada , G. Micela , I. Ribas , A. M. T. Pollock , C. Eiroa , A. Velasco , E. Solano , D. Garcia-Alvarez

Atmospheric escape from close-in Neptunes and hot Jupiters around sun-like stars driven by extreme ultraviolet (EUV) irradiation plays an important role in the evolution of exo-planets and in shaping their ensemble properties. Intermediate…

Solar and Stellar Astrophysics · Physics 2019-12-06 Matthias R. Schreiber , Boris T. Gaensicke , Odette Toloza , Mercedes-S. Hernandez , Felipe Lagos

Upper atmospheres of Hot Jupiters are subject to extreme radiation conditions that can result in rapid atmospheric escape. The composition and structure of the upper atmospheres of these planets are affected by the high-energy spectrum of…

Solar and Stellar Astrophysics · Physics 2015-06-23 J. M. Chadney , M. Galand , Y. C. Unruh , T. T. Koskinen , J. Sanz-Forcada

Atmospheric mass loss plays a major role in the evolution of exoplanets. This process is driven by the stellar high-energy irradiation, especially in the first hundreds of millions of years after dissipation of the proto-planetary disk. A…

Extreme Ultraviolet (EUV) driven atmospheric escape is a key process in the atmospheric evolution of close-in exoplanets. In many evolutionary models, the energy-limited mass-loss rate with a constant efficiency (typically $\sim10\%$) is…

Earth and Planetary Astrophysics · Physics 2025-03-19 Hiroto Mitani , Riouhei Nakatani , Rolf Kuiper

Several circumbinary planets have recently been discovered. The orbit of a planet around a binary stellar system poses several dynamic constraints. The effects that radiation from the host stars may have on the planet atmospheres must be…

Earth and Planetary Astrophysics · Physics 2014-10-15 J. Sanz-Forcada , S. Desidera , G. Micela

Direct and statistical observational evidences suggest that photoevaporation is important in eroding the atmosphere of sub-Neptune planets. We construct full hydrodynamic simulations, coupled with consistent thermochemistry and ray-tracing…

Earth and Planetary Astrophysics · Physics 2018-07-11 Lile Wang , Fei Dai

Planetary mass loss is governed by several physical mechanisms, including photoionisation that may impact the evolution of the atmosphere. Stellar radiation energy deposited as heat depends strongly on the energy of the primary electrons…

Earth and Planetary Astrophysics · Physics 2023-09-18 Alexande Gillet , Antonio Garcia Munoz , Antoine Strugarek

Atmospheric escape is an important process that controls the long-term evolution of close-in planets. We perform radiation hydrodynamics simulations of photo-evaporation of exoplanets' atmospheres to study the effect of photoelectric…

Earth and Planetary Astrophysics · Physics 2021-03-08 Hiroto Mitani , Riouhei Nakatani , Naoki Yoshida

The composition and structure of the upper atmospheres of Extrasolar Giant Planets (EGPs) are affected by the high-energy spectrum of their host stars from soft X-rays to EUV. This emission depends on the activity level of the star, which…

Earth and Planetary Astrophysics · Physics 2016-02-24 J. M. Chadney , M. Galand , T. T. Koskinen , S. Miller , J. Sanz-Forcada , Y. C. Unruh , R. V. Yelle

Atmospheric escape is an important factor shaping the exoplanet population and hence drives our understanding of planet formation. Atmospheric escape from giant planets is driven primarily by the stellar X-ray and extreme-ultraviolet (EUV)…

Solar and Stellar Astrophysics · Physics 2021-01-04 A. G. Sreejith , L. Fossati , A. Youngblood , K. France , S. Ambily

Planets that reside close-in to their host star are subject to intense high-energy irradiation. Extreme-ultraviolet (EUV) and X-ray radiation (together, XUV) is thought to drive mass loss from planets with volatile envelopes. We present…

The population of known low- to intermediate-mass exoplanets shows a large spread in densities, which is believed to be due to the diversity of planetary atmospheres and thus controlled by planetary atmospheric mass loss. One of the main…

Earth and Planetary Astrophysics · Physics 2021-11-19 Daria Kubyshkina
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