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F. Sainsbury-Martinez
F. Sainsbury-Martinez
Radius
Astrophysics
Physics
Advection
Hot Jupiter
4
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36
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Exploring Deep, Hot, Adiabats as a Potential Solution to the Radius Inflation Problem in Brown Dwarfs: Long Timescale Models of the Deep Atmospheres of KELT-1b, Kepler-13Ab, and SDSS1411B
2021
arXiv: Earth and Planetary Astrophysics
F. Sainsbury-Martinez
Sarah L. Casewell
J. D. Lothringer
M. W. Phillips
Pascal Tremblin
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Exploring deep and hot adiabats as a potential solution to the radius inflation problem in brown dwarfs. Long-timescale models of the deep atmospheres of KELT-1b, Kepler-13Ab, andSDSS1411B
2021
Astronomy and Astrophysics
F. Sainsbury-Martinez
Sarah L. Casewell
J. D. Lothringer
M. W. Phillips
Pascal Tremblin
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Idealised simulations of the deep atmosphere of hot jupiters: Deep, hot, adiabats as a robust solution to the radius inflation problem.
2019
arXiv: Earth and Planetary Astrophysics
F. Sainsbury-Martinez
P. Wang
Sebastien Fromang
Pascal Tremblin
Thomas Dubos
Yann Meurdesoif
Aymeric Spiga
Jérémy Leconte
Isabelle Baraffe
Gilles Chabrier
Nathan J. Mayne
Benjamin Drummond
F. Debras
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Citations (2)
Idealised simulations of the deep atmosphere of hot Jupiters. Deep, hot adiabats as a robust solution to the radius inflation problem
2019
Astronomy and Astrophysics
F. Sainsbury-Martinez
P. Wang
Sebastien Fromang
Pascal Tremblin
Thomas Dubos
Yann Meurdesoif
Aymeric Spiga
Jérémy Leconte
Isabelle Baraffe
Gilles Chabrier
Nathan J. Mayne
Benjamin Drummond
F. Debras
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Citations (34)
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