X-SHYNE: X-Shooter spectra of young exoplanet analogs II. Presentation and analysis of the full library

Fuente: arXiv
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Autori principali: Petrus, Simon, Chauvin, Gaël, Bonnefoy, Mickaël, Tremblin, Pascal, Morley, Caroline, Charnay, Benjamin, Suarez, Genaro, Gagné, Jonathan, Palma-Bifani, Paulina, Denis, Allan, Ravet, Matthieu, Bayo, Amelia, Bézard, Bruno, Biller, Beth, Delorme, Philippe, Faherty, Jacqueline, Goyal, Jayesh M., Hoch, Kielan, Hoy, Kevin, Jenkins, James S, Lagrange, Anne-Marie, Lavie, Baptiste, Liu, Michael C., Manjavacas, Elena, Marleau, Gabriel-Dominique, McElwain, Michael, Mollière, Paul, Mordasini, Christophe, Phillips, Mark, Rojo, Patricio, Zhang, Zhoujian, Zurlo, Alice
Natura: Preprint
Pubblicazione: 2025
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author Petrus, Simon
Chauvin, Gaël
Bonnefoy, Mickaël
Tremblin, Pascal
Morley, Caroline
Charnay, Benjamin
Suarez, Genaro
Gagné, Jonathan
Palma-Bifani, Paulina
Denis, Allan
Ravet, Matthieu
Bayo, Amelia
Bézard, Bruno
Biller, Beth
Delorme, Philippe
Faherty, Jacqueline
Goyal, Jayesh M.
Hoch, Kielan
Hoy, Kevin
Jenkins, James S
Lagrange, Anne-Marie
Lavie, Baptiste
Liu, Michael C.
Manjavacas, Elena
Marleau, Gabriel-Dominique
McElwain, Michael
Mollière, Paul
Mordasini, Christophe
Phillips, Mark
Rojo, Patricio
Zhang, Zhoujian
Zurlo, Alice
author_facet Petrus, Simon
Chauvin, Gaël
Bonnefoy, Mickaël
Tremblin, Pascal
Morley, Caroline
Charnay, Benjamin
Suarez, Genaro
Gagné, Jonathan
Palma-Bifani, Paulina
Denis, Allan
Ravet, Matthieu
Bayo, Amelia
Bézard, Bruno
Biller, Beth
Delorme, Philippe
Faherty, Jacqueline
Goyal, Jayesh M.
Hoch, Kielan
Hoy, Kevin
Jenkins, James S
Lagrange, Anne-Marie
Lavie, Baptiste
Liu, Michael C.
Manjavacas, Elena
Marleau, Gabriel-Dominique
McElwain, Michael
Mollière, Paul
Mordasini, Christophe
Phillips, Mark
Rojo, Patricio
Zhang, Zhoujian
Zurlo, Alice
contents The X-SHYNE library is a homogeneous sample of 43 medium-resolution (R=8000) infrared (0.3-2.5um) spectra of young (<500Myr), low-mass (<20Mjup), and cold (Teff=600-2000K) isolated brown dwarfs and wide-separation companions observed with the VLT/X-Shooter instrument. To characterize our targets, we performed a global comparative analysis. We first applied a semi-empirical approach. By refining their age and bolometric luminosity, we derived key atmospheric and physical properties, such as Teff, mass, surface gravity (g), and radius, using the evolutionary model COND03. These results were then compared with the results from a synthetic analysis based on three self-consistent atmospheric models. To compare our spectra with these grids we used the Bayesian inference code ForMoSA. We found similar Lbol estimates between both approaches, but an underestimated Teff from the cloudy models, likely due to a lack of absorbers that could dominate the J and H bands of early L. We also observed a discrepancy in the log(g) estimates, which are dispersed between 3.5 and 5.5 dex for mid-L objects. We interpreted this as a bias caused by a range of rotational velocities leading to cloud migration toward equatorial latitudes, combined with a variety of viewing angles that result in different observed atmospheric properties (cloud column densities, atmospheric pressures, etc.). Finally, while providing robust estimates of [M/H] and C/O for individual objects remains challenging, the X-SHYNE library globally suggests solar values, which are consistent with a formation via stellar formation mechanisms. This study highlights the strength of homogeneous datasets in performing comparative analyses, reducing the impact of systematics, and ensuring robust conclusions while avoiding over-interpretation.
format Preprint
id arxiv_https___arxiv_org_abs_2507_16899
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle X-SHYNE: X-Shooter spectra of young exoplanet analogs II. Presentation and analysis of the full library
Petrus, Simon
Chauvin, Gaël
Bonnefoy, Mickaël
Tremblin, Pascal
Morley, Caroline
Charnay, Benjamin
Suarez, Genaro
Gagné, Jonathan
Palma-Bifani, Paulina
Denis, Allan
Ravet, Matthieu
Bayo, Amelia
Bézard, Bruno
Biller, Beth
Delorme, Philippe
Faherty, Jacqueline
Goyal, Jayesh M.
Hoch, Kielan
Hoy, Kevin
Jenkins, James S
Lagrange, Anne-Marie
Lavie, Baptiste
Liu, Michael C.
Manjavacas, Elena
Marleau, Gabriel-Dominique
McElwain, Michael
Mollière, Paul
Mordasini, Christophe
Phillips, Mark
Rojo, Patricio
Zhang, Zhoujian
Zurlo, Alice
Earth and Planetary Astrophysics
The X-SHYNE library is a homogeneous sample of 43 medium-resolution (R=8000) infrared (0.3-2.5um) spectra of young (<500Myr), low-mass (<20Mjup), and cold (Teff=600-2000K) isolated brown dwarfs and wide-separation companions observed with the VLT/X-Shooter instrument. To characterize our targets, we performed a global comparative analysis. We first applied a semi-empirical approach. By refining their age and bolometric luminosity, we derived key atmospheric and physical properties, such as Teff, mass, surface gravity (g), and radius, using the evolutionary model COND03. These results were then compared with the results from a synthetic analysis based on three self-consistent atmospheric models. To compare our spectra with these grids we used the Bayesian inference code ForMoSA. We found similar Lbol estimates between both approaches, but an underestimated Teff from the cloudy models, likely due to a lack of absorbers that could dominate the J and H bands of early L. We also observed a discrepancy in the log(g) estimates, which are dispersed between 3.5 and 5.5 dex for mid-L objects. We interpreted this as a bias caused by a range of rotational velocities leading to cloud migration toward equatorial latitudes, combined with a variety of viewing angles that result in different observed atmospheric properties (cloud column densities, atmospheric pressures, etc.). Finally, while providing robust estimates of [M/H] and C/O for individual objects remains challenging, the X-SHYNE library globally suggests solar values, which are consistent with a formation via stellar formation mechanisms. This study highlights the strength of homogeneous datasets in performing comparative analyses, reducing the impact of systematics, and ensuring robust conclusions while avoiding over-interpretation.
title X-SHYNE: X-Shooter spectra of young exoplanet analogs II. Presentation and analysis of the full library
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2507.16899