The JWST weather report from the nearest brown dwarfs III: Heterogeneous clouds and Thermochemical instabilities as possible drivers of WISE 1049AB's spectroscopic variability

Fuente: arXiv
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Autori principali: Oliveros-Gomez, Natalia, Manjavacas, Elena, Karalidi, Theodora, Phillippe, Myrla, Estrada, Beatriz Campos, Biller, Beth, Vos, Johanna M., Faherty, Jacqueline, Chen, Xueqing, Dupuy, Trent J., Henning, Thomas, McCarthy, Allison M., Muirhead, Philip S., Lee, Elspeth K. H., Tremblin, Pascal, Ramirez, Jasmine, Suarez, Genaro, Sutlieff, Ben J., Tan, Xianyu, Crouzet, Nicolas
Natura: Preprint
Pubblicazione: 2025
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author Oliveros-Gomez, Natalia
Manjavacas, Elena
Karalidi, Theodora
Phillippe, Myrla
Estrada, Beatriz Campos
Biller, Beth
Vos, Johanna M.
Faherty, Jacqueline
Chen, Xueqing
Dupuy, Trent J.
Henning, Thomas
McCarthy, Allison M.
Muirhead, Philip S.
Lee, Elspeth K. H.
Tremblin, Pascal
Ramirez, Jasmine
Suarez, Genaro
Sutlieff, Ben J.
Tan, Xianyu
Crouzet, Nicolas
author_facet Oliveros-Gomez, Natalia
Manjavacas, Elena
Karalidi, Theodora
Phillippe, Myrla
Estrada, Beatriz Campos
Biller, Beth
Vos, Johanna M.
Faherty, Jacqueline
Chen, Xueqing
Dupuy, Trent J.
Henning, Thomas
McCarthy, Allison M.
Muirhead, Philip S.
Lee, Elspeth K. H.
Tremblin, Pascal
Ramirez, Jasmine
Suarez, Genaro
Sutlieff, Ben J.
Tan, Xianyu
Crouzet, Nicolas
contents We present a new analysis of the spectroscopic variability of WISE~J104915.57$-$531906.1AB (WISE~1049AB, L7.5+T0.5), observed using the NIRSpec instrument onboard the James Webb Space Telescope (GO 2965 - PI: Biller). We explored the variability of the dominant molecular bands present in their 0.6--5.3~$μ$m spectra (H$_2$O, CH$_4$, CO), finding that the B component exhibits a higher maximum deviation than the A component in all the wavelength ranges tested. The light curves reveal wavelength-(atmospheric depth) and possibly chemistry-dependent variability. In particular, for the A component, the variability in the light curves at the wavelengths traced by the CH$_4$ and CO molecular absorption features is higher than that of H$_2$O, even when both trace similar pressure levels. We concluded that clouds alone are unlikely to explain the increased variability of CO and CH$_4$ with respect to H$_2$O, suggesting that an additional physical mechanism is needed to explain the observed variability. This mechanism is probably due to thermochemical instabilities. Finally, we provide a visual representation of the 3D atmospheric map reconstructed for both components using the molecular band contributions at different pressure levels and the fit of planetary-scale waves.
format Preprint
id arxiv_https___arxiv_org_abs_2511_15667
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The JWST weather report from the nearest brown dwarfs III: Heterogeneous clouds and Thermochemical instabilities as possible drivers of WISE 1049AB's spectroscopic variability
Oliveros-Gomez, Natalia
Manjavacas, Elena
Karalidi, Theodora
Phillippe, Myrla
Estrada, Beatriz Campos
Biller, Beth
Vos, Johanna M.
Faherty, Jacqueline
Chen, Xueqing
Dupuy, Trent J.
Henning, Thomas
McCarthy, Allison M.
Muirhead, Philip S.
Lee, Elspeth K. H.
Tremblin, Pascal
Ramirez, Jasmine
Suarez, Genaro
Sutlieff, Ben J.
Tan, Xianyu
Crouzet, Nicolas
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
We present a new analysis of the spectroscopic variability of WISE~J104915.57$-$531906.1AB (WISE~1049AB, L7.5+T0.5), observed using the NIRSpec instrument onboard the James Webb Space Telescope (GO 2965 - PI: Biller). We explored the variability of the dominant molecular bands present in their 0.6--5.3~$μ$m spectra (H$_2$O, CH$_4$, CO), finding that the B component exhibits a higher maximum deviation than the A component in all the wavelength ranges tested. The light curves reveal wavelength-(atmospheric depth) and possibly chemistry-dependent variability. In particular, for the A component, the variability in the light curves at the wavelengths traced by the CH$_4$ and CO molecular absorption features is higher than that of H$_2$O, even when both trace similar pressure levels. We concluded that clouds alone are unlikely to explain the increased variability of CO and CH$_4$ with respect to H$_2$O, suggesting that an additional physical mechanism is needed to explain the observed variability. This mechanism is probably due to thermochemical instabilities. Finally, we provide a visual representation of the 3D atmospheric map reconstructed for both components using the molecular band contributions at different pressure levels and the fit of planetary-scale waves.
title The JWST weather report from the nearest brown dwarfs III: Heterogeneous clouds and Thermochemical instabilities as possible drivers of WISE 1049AB's spectroscopic variability
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2511.15667