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Related papers: Intercomparison of Brown Dwarf Model Grids and Atm…

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Interpreting the spectra of brown dwarfs is key to determining the fundamental physical and chemical processes occurring in their atmospheres. Powerful Bayesian atmospheric retrieval tools have recently been applied to both exoplanet and…

Solar and Stellar Astrophysics · Physics 2015-07-15 Michael R. Line , Johanna Teske , Ben Burningham , Jonathan Fortney , Mark Marley

We present a uniform atmospheric retrieval analysis of 22 late-T and Y-type brown dwarfs within 20 pc, observed with the James Webb Space Telescope NIRSpec PRISM and MIRI LRS. This dataset provides the first continuous 0.95-12 um…

Brown dwarfs are essential probes of stellar and planetary formation, yet their low luminosities pose challenges for detection at large Galactic distances. The James Webb Space Telescope (JWST), with its unprecedented near-infrared…

Solar and Stellar Astrophysics · Physics 2025-10-03 Zhijun Tu , Shu Wang , Xiaodian Chen , Jifeng Liu

Context: L-type ultra-cool dwarfs and brown dwarfs have cloudy atmospheres that could host weather-like phenomena. The detection of photometric or spectral variability would provide insight into unresolved atmospheric heterogeneities, such…

After decades of brown dwarf discovery and follow-up, we can now infer the functional form of the mass distribution within 20 parsecs, which serves as a constraint on star formation theory at the lowest masses. Unlike objects on the main…

Most brown dwarfs have atmospheres with temperatures cold enough to form clouds. A variety of materials likely condense, including refractory metal oxides and silicates; the precise compositions and crystal structures of predicted cloud…

Solar and Stellar Astrophysics · Physics 2021-11-03 Jessica L. Luna , Caroline V. Morley

Brown dwarf spectra are rich in information revealing of the chemical and physical processes operating in their atmospheres. We apply a recently developed atmospheric retrieval tool to an ensemble of late T-dwarf (600-800K) near infrared…

Because the opacity of clouds in substellar mass object (SMO) atmospheres depends on the composition and distribution of particle sizes within the cloud, a credible cloud model is essential for accurately modeling SMO spectra and colors. We…

The determination of the brown dwarf binary fraction may contribute to the understanding of the substellar formation mechanisms. Unresolved brown dwarf binaries may be revealed through their peculiar spectra or the discrepancy between…

Solar and Stellar Astrophysics · Physics 2015-11-18 E. Manjavacas , B. Goldman , J. M. Alcalá , M. R. Zapatero-Osorio , V. J. S. Béjar , D. Homeier , M. Bonnefoy , R. L. Smart , T. Henning , F. Allard

We present opacity sampling model atmospheres, synthetic spectra and colors for brown dwarfs and very low mass stars in two limiting case of dust grain formation: 1) inefficient gravitational settling i.e. the dust is distributed according…

We present the full results of our decade-long astrometric monitoring programs targeting 31 ultracool binaries with component spectral types M7-T5. Joint analysis of resolved imaging from Keck Observatory and Hubble Space Telescope and…

Solar and Stellar Astrophysics · Physics 2017-08-09 Trent J. Dupuy , Michael C. Liu

Current atmospheric models cannot reproduce some of the characteristics of the transition between the L dwarfs with cloudy atmospheres and the T dwarfs with dust-depleted photospheres. It has been proposed that a majority of the L/T…

Astrophysics · Physics 2015-05-13 B. Goldman , H. Bouy , M. R. Zapatero Osorio , M. B. Stumpf , W. Brandner , T. Henning

Condensate clouds strongly impact the spectra of brown dwarfs and exoplanets. Recent discoveries of variable L/T transition dwarfs argued for patchy clouds in at least some ultracool atmospheres. This study aims to measure the frequency and…

Solar and Stellar Astrophysics · Physics 2015-06-18 Esther Buenzli , Daniel Apai , Jacqueline Radigan , I. Neill Reid , Davin Flateau

Global climate models represent small-scale processes such as clouds and convection using quasi-empirical models known as parameterizations, and these parameterizations are a leading cause of uncertainty in climate projections. A promising…

Atmospheric and Oceanic Physics · Physics 2020-08-31 Janni Yuval , Paul A. O'Gorman

Low-mass stars and brown dwarfs -- spectral types (SpTs) M0 and later -- play a significant role in studying stellar and substellar processes and demographics, reaching down to planetary-mass objects. Currently, the classification of these…

Solar and Stellar Astrophysics · Physics 2025-08-14 Tianxing Zhou , Christopher A. Theissen , S. Jean Feeser , William M. J. Best , Adam J. Burgasser , Kelle L. Cruz , Lexu Zhao

Growing observational evidence has suggested active meteorology in atmospheres of brown dwarfs (BDs) and directly imaged extrasolar giant planets (EGPs). In particular, a number of surveys have shown that near-IR brightness variability is…

Solar and Stellar Astrophysics · Physics 2019-04-03 Xianyu Tan , Adam P. Showman

The discovery of epsilon Indi Ba, Bb, a binary brown dwarf system very close to the Sun, makes possible a concerted campaign to characterise the physical parameters of two T dwarfs. Recent observations suggest substellar atmospheric and…

Solar and Stellar Astrophysics · Physics 2015-05-14 Robert R. King , Mark J. McCaughrean , Derek Homeier , France Allard , Ralf-Dieter Scholz , Nicolas Lodieu

We present preliminary non-grey model atmospheres and interiors for cool brown dwarfs. The resulting synthetic spectra are compared to available spectroscopic and photometric observations of the coolest brown dwarf yet discovered, Gl229B…

Astrophysics · Physics 2008-02-03 France Allard , Peter H. Hauschildt , Isabelle Baraffe , Gilles Chabrier

We show that the total habitable volume in the atmospheres of cool brown dwarfs with effective temperatures of $\sim 250$-$350$ K is possibly larger by two orders of magnitude than that of Earth-like planets. We also study the role of…

Earth and Planetary Astrophysics · Physics 2019-10-01 Manasvi Lingam , Abraham Loeb

Physics-based numerical models have been the bedrock of atmospheric sciences for decades, offering robust solutions but often at the cost of significant computational resources. Deep learning (DL) models have emerged as powerful tools in…