JWST COMPASS: NIRSpec/G395H Transmission Observations of the Super-Earth TOI-776b

Fuente: arXiv
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Autores principales: Alderson, Lili, Moran, Sarah E., Wallack, Nicole L., Batalha, Natasha E., Wogan, Nicholas F., Dattilo, Anne, Wakeford, Hannah R., Redai, Jea Adam, Alam, Munazza K., Aguichine, Artyom, Batalha, Natalie M., Gagnebin, Anna, Gao, Peter, Kirk, James, López-Morales, Mercedes, Meech, Annabella, Teske, Johanna, Wolfgang, Angie
Formato: Preprint
Publicado: 2025
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author Alderson, Lili
Moran, Sarah E.
Wallack, Nicole L.
Batalha, Natasha E.
Wogan, Nicholas F.
Dattilo, Anne
Wakeford, Hannah R.
Redai, Jea Adam
Alam, Munazza K.
Aguichine, Artyom
Batalha, Natalie M.
Gagnebin, Anna
Gao, Peter
Kirk, James
López-Morales, Mercedes
Meech, Annabella
Teske, Johanna
Wolfgang, Angie
author_facet Alderson, Lili
Moran, Sarah E.
Wallack, Nicole L.
Batalha, Natasha E.
Wogan, Nicholas F.
Dattilo, Anne
Wakeford, Hannah R.
Redai, Jea Adam
Alam, Munazza K.
Aguichine, Artyom
Batalha, Natalie M.
Gagnebin, Anna
Gao, Peter
Kirk, James
López-Morales, Mercedes
Meech, Annabella
Teske, Johanna
Wolfgang, Angie
contents We present two transit observations of the $\sim$520K, 1.85R$_\oplus$, 4.0M$_\oplus$ super-Earth TOI-776b with JWST NIRSpec/G395H, resulting in a 2.8-5.2$μ$m transmission spectrum. Producing reductions using the ExoTiC-JEDI and Eureka! pipelines, we obtain a median transit depth precision of 34ppm for both visits and both reductions in spectroscopic channels 30 pixels wide ($\sim$0.02$μ$m). We find that our independent reductions produce consistent transmission spectra, however, each visit shows differing overall structure. For both reductions, a flat line is preferred for Visit 1 while a flat line with an offset between the NRS1 and NRS2 detectors is preferred for Visit 2; however, we are able to correct for this offset during our modeling analysis following methods outlined in previous literature. Using picaso forward models, we can rule out metallicities up to at least 100$\times$ solar with an opaque pressure of 10$^{-3}$ bar to $\geq$3$σ$ in all cases, however, the exact lower limit varies between the visits, with Visit 1 ruling out $\lesssim$100$\times$ solar while the lower limits for Visit 2 extend beyond $\sim$350$\times$ solar. Our results add to the growing list of super-Earth atmospheric constraints by JWST, which provide critical insight into the diversity and challenges of characterizing terrestrial planets.
format Preprint
id arxiv_https___arxiv_org_abs_2501_14596
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle JWST COMPASS: NIRSpec/G395H Transmission Observations of the Super-Earth TOI-776b
Alderson, Lili
Moran, Sarah E.
Wallack, Nicole L.
Batalha, Natasha E.
Wogan, Nicholas F.
Dattilo, Anne
Wakeford, Hannah R.
Redai, Jea Adam
Alam, Munazza K.
Aguichine, Artyom
Batalha, Natalie M.
Gagnebin, Anna
Gao, Peter
Kirk, James
López-Morales, Mercedes
Meech, Annabella
Teske, Johanna
Wolfgang, Angie
Earth and Planetary Astrophysics
We present two transit observations of the $\sim$520K, 1.85R$_\oplus$, 4.0M$_\oplus$ super-Earth TOI-776b with JWST NIRSpec/G395H, resulting in a 2.8-5.2$μ$m transmission spectrum. Producing reductions using the ExoTiC-JEDI and Eureka! pipelines, we obtain a median transit depth precision of 34ppm for both visits and both reductions in spectroscopic channels 30 pixels wide ($\sim$0.02$μ$m). We find that our independent reductions produce consistent transmission spectra, however, each visit shows differing overall structure. For both reductions, a flat line is preferred for Visit 1 while a flat line with an offset between the NRS1 and NRS2 detectors is preferred for Visit 2; however, we are able to correct for this offset during our modeling analysis following methods outlined in previous literature. Using picaso forward models, we can rule out metallicities up to at least 100$\times$ solar with an opaque pressure of 10$^{-3}$ bar to $\geq$3$σ$ in all cases, however, the exact lower limit varies between the visits, with Visit 1 ruling out $\lesssim$100$\times$ solar while the lower limits for Visit 2 extend beyond $\sim$350$\times$ solar. Our results add to the growing list of super-Earth atmospheric constraints by JWST, which provide critical insight into the diversity and challenges of characterizing terrestrial planets.
title JWST COMPASS: NIRSpec/G395H Transmission Observations of the Super-Earth TOI-776b
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2501.14596