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As the closest transiting hot Jupiter to Earth, HD 189733b has been the benchmark planet for atmospheric characterization. It has also been the anchor point for much of our theoretical understanding of exoplanet atmospheres from…

The atmospheric chemical composition of a hot Jupiter can lead to insights into where in its natal protoplanetary disk it formed and its subsequent migration pathway. We use a 1-D chemical kinetics code to compute a suite of models across a…

Earth and Planetary Astrophysics · Physics 2022-08-17 Richard Hobbs , Oliver Shorttle , Nikku Madhusudhan

The high cosmic abundance and the intermediate volatility and chemical properties of sulfur allow the use of sulfur-bearing species as a tracer of the chemical processes in the atmospheres of hot Jupiter exoplanets. Nevertheless, despite…

Earth and Planetary Astrophysics · Physics 2023-03-01 J. Polman , L. B. F. M. Waters , M. Min , Y. Miguel , N. Khorshid

Photochemical hazes are expected to form in hot Jupiter atmospheres and may explain the strong scattering slopes and muted spectral features observed in the transmission spectra of many hot Jupiters. Absorption and scattering by…

Earth and Planetary Astrophysics · Physics 2023-08-02 Maria E. Steinrueck , Tommi Koskinen , Panayotis Lavvas , Vivien Parmentier , Sebastian Zieba , Xianyu Tan , Xi Zhang , Laura Kreidberg

We develop a new 1D photochemical kinetics code to address stratospheric chemistry and stratospheric heating in hot Jupiters. Here we address optically active S-containing species and CO2 at 1200 < T < 2000 K. HS (mercapto) and S2 are…

Earth and Planetary Astrophysics · Physics 2009-08-10 K. Zahnle , M. S. Marley , R. S. Freedman , K. Lodders , J. J. Fortney

We present and validate a new network of atmospheric thermo-chemical and photo-chemical sulfur reactions. We use a 1-D chemical kinetics model to investigate these reactions as part of a broader HCNO chemical network in a series of hot and…

Earth and Planetary Astrophysics · Physics 2021-07-07 Richard Hobbs , Paul Rimmer , Oliver Shorttle , Nikku Madhusudhan

We use a 1D model to address photochemistry and possible haze formation in the irradiated warm Jupiter, 51 Eridani b. The intended focus was to be carbon, but sulfur photochemistry turns out to be important. The case for organic…

Earth and Planetary Astrophysics · Physics 2016-06-29 Kevin J. Zahnle , Mark S. Marley , Caroline V. Morley , Julianne I. Moses

The core accretion theory for giant planet formation predicts enrichment of elemental abundances in planetary envelopes caused by runaway accretion of planetesimals, which is consistent with measured super-solar abundances of C, N, P, S,…

Earth and Planetary Astrophysics · Physics 2015-06-22 Nikku Madhusudhan , Nicolas Crouzet , Peter R. McCullough , Drake Deming , Christina Hedges

Measurements of the atmospheric carbon (C) and oxygen (O) relative to hydrogen (H) in hot Jupiters (relative to their host stars) provide insight into their formation location and subsequent orbital migration. Hot Jupiters that form beyond…

We have developed a pseudo two-dimensional model of a planetary atmosphere, which takes into account thermochemical kinetics, photochemistry, vertical mixing, and horizontal transport, the latter being modeled as a uniform zonal wind. We…

Earth and Planetary Astrophysics · Physics 2014-05-08 Marcelino Agundez , Vivien Parmentier , Olivia Venot , Franck Hersant , Franck Selsis

Motivated by recent spectroscopic evidence for carbon-rich atmospheres on some transiting exoplanets, we investigate the influence of the C/O ratio on the chemistry, composition, and spectra of extrasolar giant planets both from a…

Earth and Planetary Astrophysics · Physics 2015-06-12 J. I. Moses , N. Madhusudhan , C. Visscher , R. S. Freedman

We have developed 1-D photochemical and thermochemical kinetics and diffusion models for the transiting exoplanets HD 189733b and HD 209458b to study the effects of disequilibrium chemistry on the atmospheric composition of "hot Jupiters."…

The elemental ratios of carbon, nitrogen, and oxygen in the atmospheres of hot Jupiters may hold clues to their formation locations in the protostellar disc. In this work, we adopt gas phase chemical abundances of C, N and O from several…

Earth and Planetary Astrophysics · Physics 2022-06-22 Spandan Dash , Liton Majumdar , Karen Willacy , Shang-Min Tsai , Neal Turner , P. B. Rimmer , Murthy S. Gudipati , Wladimir Lyra , Anil Bhardwaj

The atmospheres of ultra-hot Jupiters are commonly considered to be at thermochemical equilibrium. We aim to provide disequilibrium chemistry maps for a global understanding of the chemistry in HAT-P-7b's atmosphere and assess the…

Recent infrared spectroscopy of hot exoplanets is beginning to reveal their atmospheric composition. Deep with in the planetary atmosphere, the composition is controlled by thermochemical equilibrium. Photochemistry becomes important higher…

Earth and Planetary Astrophysics · Physics 2015-05-18 Michael R. Line , Mao-Chang Liang , Yuk L. Yung

We present a computationally efficient 1-D seasonal radiative model, with convective adjustment, of Jupiter's atmosphere. Our model takes into account radiative forcings from the main hydrocarbons (methane, ethane, acetylene), ammonia,…

Earth and Planetary Astrophysics · Physics 2020-11-13 Sandrine Guerlet , Aymeric Spiga , Thierry Fouchet , Hugues Delattre

We investigate the impact of photochemical hazes and disequilibrium gases on the thermal structure of hot-Jupiters, using a detailed 1-D radiative-convective model. We find that the inclusion of photochemical hazes results in major heating…

Earth and Planetary Astrophysics · Physics 2021-02-24 Panayotis Lavvas , Anthony Arfaux

Photochemistry has the potential to substantially impact the atmospheric composition of exoplanets with consequences on the radiative transfer, thermal structure and dynamics of the atmospheres, particularly in UV-rich stellar environments.…

Earth and Planetary Astrophysics · Physics 2022-02-17 Benjamin Fleury , Murthy S. Gudipati , Bryana L. Henderson , Mark Swain

Ultra-hot Jupiters have recently attracted interest from observers and theoreticians alike, as they provide observationally accessible test cases. We apply a hierarchical modelling approach as a virtual laboratory to study cloud formation…

Earth and Planetary Astrophysics · Physics 2020-01-08 Ch. Helling , N. Iro , L. Corrales , D. Samra , K. Ohno , M. K. Alam , M. Steinrueck , B. Lew , K. Molaverdikhani , R. J MacDonald , O. Herbort , P. Woitke , V. Parmentier
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