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Related papers: Connecting JWST Silicate Cloud Observations to Exo…

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Context. WASP-107 b has been observed comprehensively by JWST in the near- and mid-IR bands, making it an ideal planet to probe the composition and internal dynamics. Recent analysis reveals a 8-10 um silicate feature, but it still remains…

Earth and Planetary Astrophysics · Physics 2026-04-01 Helong Huang , Michiel Min , Chris W. Ormel , Achrène Dyrek , Nicolas Crouzet

Insight into the formation and global distribution of cloud particles in exoplanet atmospheres continues to be a key problem to tackle going into the JWST era. Understanding microphysical cloud processes and atmospheric feedback mechanisms…

Earth and Planetary Astrophysics · Physics 2023-08-02 Elspeth K. H. Lee

Young exoplanets provide a critical link between understanding planet formation and atmospheric evolution. Direct imaging spectroscopy allows us to infer the properties of young, wide orbit, giant planets with high signal-to-noise. This…

WASP-96b is a hot Saturn exoplanet, with an equilibrium temperature well within the regime of thermodynamically expected extensive cloud formation. Prior observations with Hubble/WFC3, Spitzer/IRAC, and VLT/FORS2 have been combined into a…

Earth and Planetary Astrophysics · Physics 2023-02-01 Dominic Samra , Christiane Helling , Katy Chubb , Michiel Min , Ludmila Carone , Aaron Schneider

We present results from examining the silicate cloud modeling of four JWST-observed hot Jupiters in the context of brown dwarf theory to further explore signatures of formation in present-day atmospheres. We contextualize our understanding…

The newly operational JWST offers the potential to study the atmospheres of distant worlds with precision that has not been achieved before. One of the first exoplanets observed by JWST in the summer of 2022 was WASP-96 b, a hot-Saturn…

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

Clouds are ubiquitous in extrasolar planet atmospheres and are critical to our understanding of planetary climate and chemistry. They also represent one of the greater challenges to overcome when trying to interpret transit transmission…

Earth and Planetary Astrophysics · Physics 2019-10-09 Chuhong Mai , Michael R. Line

We present an atmospheric retrieval analysis of a pair of highly variable, $\sim200~$Myr old, early-T type planetary-mass exoplanet analogs SIMP J01365662+0933473 and 2MASS J21392676+0220226 using the Brewster retrieval framework. Our…

The James Webb Space Telescope (JWST) is expected to revolutionize the field of exoplanets. The broad wavelength coverage and the high sensitivity of its instruments will allow characterization of exoplanetary atmospheres with unprecedented…

Lava worlds belong to a class of short orbital period planets reaching dayside temperatures high enough to melt their silicate crust. Theory predicts that the resulting lava oceans outgas their volatile components, attaining equilibrium…

Earth and Planetary Astrophysics · Physics 2022-05-25 Mantas Zilinskas , Christiaan van Buchem , Yamila Miguel , Amy Louca , Roxana Lupu , Sebastian Zieba , Wim van Westrenen

WASP-39b is one of the first extrasolar giant gas planets that has been observed within the JWST ERS program. Fundamental properties that may enable the link to exoplanet formation differ amongst retrieval methods, for example metallicity…

Earth and Planetary Astrophysics · Physics 2025-12-03 Ludmila Carone , David A. Lewis , Dominic Samra , Aaron D. Schneider , Christiane Helling

Direct mid-infrared signatures of silicate clouds in substellar atmospheres were first detected in Spitzer observations of brown dwarfs, although their existence was previously inferred from near-infrared spectra. With JWST's Mid-Infrared…

Earth and Planetary Astrophysics · Physics 2024-08-14 Sarah E. Moran , Mark S. Marley , Samuel D. Crossley

The James Webb Space Telescope will enable astronomers to obtain exoplanet spectra of unprecedented precision. Especially the MIRI instrument may shed light on the nature of the cloud particles obscuring planetary transmission spectra in…

Earth and Planetary Astrophysics · Physics 2017-03-22 Paul Mollière , Roy van Boekel , Jeroen Bouwman , Thomas Henning , Pierre-Olivier Lagage , Michiel Min

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 James Webb Space Telescope (JWST) will measure exoplanet transmission and eclipse spectroscopy at un-precedented precisions to better understand planet structure, dynamics, chemistry and formation. These are essential tools on the march…

Earth and Planetary Astrophysics · Physics 2018-07-18 Everett Schlawin , Thomas P. Greene , Michael Line , Jonathan J. Fortney , Marcia Rieke

JWST has shown a large diversity in warm Jupiter spectra, despite only small variations in the planetary parameters. However, the main driver of this diversity remains unclear. We aim to identify the mechanisms responsible for the spectral…

The James Webb Space Telescope (JWST) is ushering in a new era in remote sensing of exoplanetary atmospheres. Atmospheric retrievals of exoplanets can be highly sensitive to high-precision JWST data. It is, therefore, imperative to…

Earth and Planetary Astrophysics · Physics 2023-07-12 Måns Holmberg , Nikku Madhusudhan

Aerosols have been found to be nearly ubiquitous in substellar atmospheres. The precise temperature at which these aerosols begin to form in exoplanets has yet to be observationally constrained. Theoretical models and observations of muted…

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