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The analysis of exoplanetary atmospheres often relies upon the observation of transit or eclipse events. While very powerful, these snapshots provide mainly 1-dimensional information on the planet structure and do not easily allow precise…

Earth and Planetary Astrophysics · Physics 2021-06-02 Quentin Changeat , Ahmed F. Al-Refaie , Billy Edwards , Ingo P. Waldmann , Giovanna Tinetti

Motivated by the observed ~30% variations in flux from the L7 dwarf VHS 1256 b, we subjected its time-resolved Hubble Space Telescope (HST) WFC3 spectra (measured in two epochs in 2018 and 2020), as well as medium-resolution Very Large…

Earth and Planetary Astrophysics · Physics 2024-09-13 Anna Lueber , Kevin Heng , Brendan P. Bowler , Daniel Kitzmann , Johanna M. Vos , Yifan Zhou

Optical phase curves have become one of the common probes of exoplanetary atmospheres, but the information they encode has not been fully elucidated. Building on a diverse body of work, we upgrade the Flexible Modeling System (FMS) to…

Earth and Planetary Astrophysics · Physics 2016-03-09 Maria Oreshenko , Kevin Heng , Brice-Olivier Demory

The characterization of nearby rocky exoplanets will become feasible with the next generation of telescopes, such as the Extremely Large Telescope (ELT) and the mission concept Habitable Worlds Observatory (HWO). Using an improved model…

Earth and Planetary Astrophysics · Physics 2025-08-06 Giulia Roccetti , Michael F. Sterzik , Julia V. Seidel , Claudia Emde , Mihail Manev , Stefano Bagnulo

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…

We present the highest fidelity spectrum to date of a planetary-mass object. VHS 1256 b is a $<$20 M$_\mathrm{Jup}$ widely separated ($\sim$8\arcsec, a = 150 au), young, planetary-mass companion that shares photometric colors and…

Earth and Planetary Astrophysics · Physics 2024-07-08 Brittany E. Miles , Beth A. Biller , Polychronis Patapis , Kadin Worthen , Emily Rickman , Kielan K. W. Hoch , Andrew Skemer , Marshall D. Perrin , Niall Whiteford , Christine H. Chen , B. Sargent , Sagnick Mukherjee , Caroline V. Morley , Sarah E. Moran , Mickael Bonnefoy , Simon Petrus , Aarynn L. Carter , Elodie Choquet , Sasha Hinkley , Kimberly Ward-Duong , Jarron M. Leisenring , Maxwell A. Millar-Blanchaer , Laurent Pueyo , Shrishmoy Ray , Karl R. Stapelfeldt , Jordan M. Stone , Jason J. Wang , Olivier Absil , William O. Balmer , Anthony Boccaletti , Mariangela Bonavita , Mark Booth , Brendan P. Bowler , Gael Chauvin , Valentin Christiaens , Thayne Currie , Camilla Danielski , Jonathan J. Fortney , Julien H. Girard , Alexandra Z. Greenbaum , Thomas Henning , Dean C. Hines , Markus Janson , Paul Kalas , Jens Kammerer , Matthew A. Kenworthy , Pierre Kervella , Pierre-Olivier Lagage , Ben W. P. Lew , Michael C. Liu , Bruce Macintosh , Sebastian Marino , Mark S. Marley , Christian Marois , Elisabeth C. Matthews , Brenda C. Matthews , Dimitri Mawet , Michael W. McElwain , Stanimir Metchev , Michael R. Meyer , Paul Molliere , Eric Pantin , Andreas Quirrenbachm Isabel Rebollido , Bin B. Ren , Malavika Vasist , Mark C. Wyatt , Yifan Zhou , Zackery W. Briesemeister , Marta L. Bryan , Per Calissendorff , Faustine Catalloube , Gabriele Cugno , Matthew De Furio , Trent J. Dupuy , Samuel M. Factor , Jacqueline K. Faherty , Michael P. Fitzgerald , Kyle Franson , Eileen C. Gonzales , Callie E. Hood , Alex R. Howe , Adam L. Kraus , Masayuki Kuzuhara , Kellen Lawson , Cecilia Lazzoni , Pengyu Liu , Jorge Llop-Sayson , James P. Lloyd , Raquel A. Martinez , Johan Mazoyer , Sascha P. Quanz , Jea Adams Redai , Matthias Samland , Joshua E. Schlieder , Motohide Tamura , Xianyu Tan , Taichi Uyama , Arthur Vigan , Johanna M. Vos , Kevin Wagner , Schuyler G. Wolff , Marie Ygouf , Keming Zhang , Zhoujian Zhang

Measurements of the C/O ratio in brown dwarfs are lacking, in part due to past models adopting solar C/O only. We have expanded the ATMO 2020 atmosphere model grid to include non-solar metallicities and C/O ratios in the T dwarf regime. We…

Solar and Stellar Astrophysics · Physics 2023-12-05 Mark W. Phillips , Michael C. Liu , Zhoujian Zhang

We investigate the impact of clouds on the atmosphere of GJ~1214b using the radiatively-coupled, phase-equilibrium cloud model {\sc EddySed} coupled to the {\sc Unified Model} general circulation model. We find that, consistent with…

Earth and Planetary Astrophysics · Physics 2022-10-05 D. A. Christie , N. J. Mayne , R. M. Gillard , J. Manners , E. Hébrard , S. Lines , K. Kohary

Understanding of cloud microphysics and the evolution of cloud structures in sub-stellar atmospheres remains a key challenge in the JWST era. The abundance of new JWST data necessitates models that are suitable for coupling with large-scale…

Earth and Planetary Astrophysics · Physics 2025-03-19 Elspeth K. H. Lee , Kazumasa Ohno

We present the Stagger-grid, a comprehensive grid of time-dependent, 3D hydrodynamic model atmospheres for late-type stars with realistic treatment of radiative transfer, covering a wide range in stellar parameters. This grid of 3D models…

Solar and Stellar Astrophysics · Physics 2015-06-15 Z. Magic , R. Collet , M. Asplund , R. Trampedach , W. Hayek , A. Chiavassa , R. F. Stein , Å. Nordlund

With Planck and Herschel, we now have the spectral coverage and angular resolution required to observe dense and cold molecular clouds. As these clouds are optically thick at short wavelength but optically thin at long wavelength, it is…

We present detections of methane in R of $\sim$1300, L band spectra of VHS 1256 b and PSO 318.5, two low gravity, red, late L dwarfs that share the same colors as the HR 8799 planets. These spectra reveal shallow methane features, which…

Earth and Planetary Astrophysics · Physics 2018-12-12 Brittany E. Miles , Andrew J. Skemer , Travis S. Barman , Katelyn N. Allers , Jordan M. Stone

Brown dwarfs and exoplanets provide unique atmospheric regimes that hold information about their formation routes and evolutionary states. Modelling mineral cloud particle formation is key to prepare for missions and instruments like…

Earth and Planetary Astrophysics · Physics 2022-07-13 Dominic Samra , Christiane Helling , Tilman Birnstiel

The advent of high-resolution spectroscopy as a method for exoplanet atmospheric characterization has expanded our capability to study non-transiting planets, increasing the number of planets accessible for observation. Many of the most…

Earth and Planetary Astrophysics · Physics 2021-12-22 Isaac Malsky , Emily Rauscher , Eliza M. R. Kempton , Michael Roman , Deryl Long , Caleb K. Harada

We present a multiple scattering vector radiative transfer model which produces disk integrated, full phase polarized light curves for reflected light from an exoplanetary atmosphere. We validate our model against results from published…

Earth and Planetary Astrophysics · Physics 2016-01-27 Pushkar Kopparla , Vijay Natraj , Xi Zhang , Mark R. Swain , Sloane J. Wiktorowicz , Yuk L. Yung

High-Resolution Multi-scale Modeling Frameworks (HR) -- global climate models that embed separate, convection-resolving models with high enough resolution to resolve boundary layer eddies -- have exciting potential for investigating low…

Direct-imaging spectra hold rich information about a planet's atmosphere and surface, and several space-based missions aiming at such observations will become a reality in the near future. Previous spectral retrieval works have resulted in…

Earth and Planetary Astrophysics · Physics 2022-06-01 Fei Wang , Yuka Fujii , Jinping He

The lowest-mass stars, brown dwarfs and extrasolar planets present challenges and opportunities for understanding dynamics and cloud formation processes in low-temperature atmospheres. For brown dwarfs, the formation, variation and rapid…

Solar and Stellar Astrophysics · Physics 2009-10-14 Adam J. Burgasser

We aim at understanding the formation of cloud layers in quasi-static substellar atmospheres. The time-dependent description presented in (Helling & Woitke 2006) is a kinetic model describing nucleation, growth and evaporation. It is…

Astrophysics · Physics 2009-11-13 Ch. Helling , P. Woitke , W. -F. Thi