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Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H
Measuring the abundances of carbon and oxygen in exoplanet atmospheres is considered a crucial avenue for unlocking the formation and evolution of exoplanetary systems(1,2). Access to the chemical inventory of an exoplanet requires high-precision observations, often inferred from individual molecula...
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Nature Publishing Group UK
2023
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9946835/ https://www.ncbi.nlm.nih.gov/pubmed/36623549 http://dx.doi.org/10.1038/s41586-022-05591-3 |
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author | Alderson, Lili Wakeford, Hannah R. Alam, Munazza K. Batalha, Natasha E. Lothringer, Joshua D. Adams Redai, Jea Barat, Saugata Brande, Jonathan Damiano, Mario Daylan, Tansu Espinoza, Néstor Flagg, Laura Goyal, Jayesh M. Grant, David Hu, Renyu Inglis, Julie Lee, Elspeth K. H. Mikal-Evans, Thomas Ramos-Rosado, Lakeisha Roy, Pierre-Alexis Wallack, Nicole L. Batalha, Natalie M. Bean, Jacob L. Benneke, Björn Berta-Thompson, Zachory K. Carter, Aarynn L. Changeat, Quentin Colón, Knicole D. Crossfield, Ian J. M. Désert, Jean-Michel Foreman-Mackey, Daniel Gibson, Neale P. Kreidberg, Laura Line, Michael R. López-Morales, Mercedes Molaverdikhani, Karan Moran, Sarah E. Morello, Giuseppe Moses, Julianne I. Mukherjee, Sagnick Schlawin, Everett Sing, David K. Stevenson, Kevin B. Taylor, Jake Aggarwal, Keshav Ahrer, Eva-Maria Allen, Natalie H. Barstow, Joanna K. Bell, Taylor J. Blecic, Jasmina Casewell, Sarah L. Chubb, Katy L. Crouzet, Nicolas Cubillos, Patricio E. Decin, Leen Feinstein, Adina D. Fortney, Joanthan J. Harrington, Joseph Heng, Kevin Iro, Nicolas Kempton, Eliza M.-R. Kirk, James Knutson, Heather A. Krick, Jessica Leconte, Jérémy Lendl, Monika MacDonald, Ryan J. Mancini, Luigi Mansfield, Megan May, Erin M. Mayne, Nathan J. Miguel, Yamila Nikolov, Nikolay K. Ohno, Kazumasa Palle, Enric Parmentier, Vivien Petit dit de la Roche, Dominique J. M. Piaulet, Caroline Powell, Diana Rackham, Benjamin V. Redfield, Seth Rogers, Laura K. Rustamkulov, Zafar Tan, Xianyu Tremblin, P. Tsai, Shang-Min Turner, Jake D. de Val-Borro, Miguel Venot, Olivia Welbanks, Luis Wheatley, Peter J. Zhang, Xi |
author_facet | Alderson, Lili Wakeford, Hannah R. Alam, Munazza K. Batalha, Natasha E. Lothringer, Joshua D. Adams Redai, Jea Barat, Saugata Brande, Jonathan Damiano, Mario Daylan, Tansu Espinoza, Néstor Flagg, Laura Goyal, Jayesh M. Grant, David Hu, Renyu Inglis, Julie Lee, Elspeth K. H. Mikal-Evans, Thomas Ramos-Rosado, Lakeisha Roy, Pierre-Alexis Wallack, Nicole L. Batalha, Natalie M. Bean, Jacob L. Benneke, Björn Berta-Thompson, Zachory K. Carter, Aarynn L. Changeat, Quentin Colón, Knicole D. Crossfield, Ian J. M. Désert, Jean-Michel Foreman-Mackey, Daniel Gibson, Neale P. Kreidberg, Laura Line, Michael R. López-Morales, Mercedes Molaverdikhani, Karan Moran, Sarah E. Morello, Giuseppe Moses, Julianne I. Mukherjee, Sagnick Schlawin, Everett Sing, David K. Stevenson, Kevin B. Taylor, Jake Aggarwal, Keshav Ahrer, Eva-Maria Allen, Natalie H. Barstow, Joanna K. Bell, Taylor J. Blecic, Jasmina Casewell, Sarah L. Chubb, Katy L. Crouzet, Nicolas Cubillos, Patricio E. Decin, Leen Feinstein, Adina D. Fortney, Joanthan J. Harrington, Joseph Heng, Kevin Iro, Nicolas Kempton, Eliza M.-R. Kirk, James Knutson, Heather A. Krick, Jessica Leconte, Jérémy Lendl, Monika MacDonald, Ryan J. Mancini, Luigi Mansfield, Megan May, Erin M. Mayne, Nathan J. Miguel, Yamila Nikolov, Nikolay K. Ohno, Kazumasa Palle, Enric Parmentier, Vivien Petit dit de la Roche, Dominique J. M. Piaulet, Caroline Powell, Diana Rackham, Benjamin V. Redfield, Seth Rogers, Laura K. Rustamkulov, Zafar Tan, Xianyu Tremblin, P. Tsai, Shang-Min Turner, Jake D. de Val-Borro, Miguel Venot, Olivia Welbanks, Luis Wheatley, Peter J. Zhang, Xi |
author_sort | Alderson, Lili |
collection | PubMed |
description | Measuring the abundances of carbon and oxygen in exoplanet atmospheres is considered a crucial avenue for unlocking the formation and evolution of exoplanetary systems(1,2). Access to the chemical inventory of an exoplanet requires high-precision observations, often inferred from individual molecular detections with low-resolution space-based(3–5) and high-resolution ground-based(6–8) facilities. Here we report the medium-resolution (R ≈ 600) transmission spectrum of an exoplanet atmosphere between 3 and 5 μm covering several absorption features for the Saturn-mass exoplanet WASP-39b (ref. (9)), obtained with the Near Infrared Spectrograph (NIRSpec) G395H grating of JWST. Our observations achieve 1.46 times photon precision, providing an average transit depth uncertainty of 221 ppm per spectroscopic bin, and present minimal impacts from systematic effects. We detect significant absorption from CO(2) (28.5σ) and H(2)O (21.5σ), and identify SO(2) as the source of absorption at 4.1 μm (4.8σ). Best-fit atmospheric models range between 3 and 10 times solar metallicity, with sub-solar to solar C/O ratios. These results, including the detection of SO(2), underscore the importance of characterizing the chemistry in exoplanet atmospheres and showcase NIRSpec G395H as an excellent mode for time-series observations over this critical wavelength range(10). |
format | Online Article Text |
id | pubmed-9946835 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2023 |
publisher | Nature Publishing Group UK |
record_format | MEDLINE/PubMed |
spelling | pubmed-99468352023-02-24 Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H Alderson, Lili Wakeford, Hannah R. Alam, Munazza K. Batalha, Natasha E. Lothringer, Joshua D. Adams Redai, Jea Barat, Saugata Brande, Jonathan Damiano, Mario Daylan, Tansu Espinoza, Néstor Flagg, Laura Goyal, Jayesh M. Grant, David Hu, Renyu Inglis, Julie Lee, Elspeth K. H. Mikal-Evans, Thomas Ramos-Rosado, Lakeisha Roy, Pierre-Alexis Wallack, Nicole L. Batalha, Natalie M. Bean, Jacob L. Benneke, Björn Berta-Thompson, Zachory K. Carter, Aarynn L. Changeat, Quentin Colón, Knicole D. Crossfield, Ian J. M. Désert, Jean-Michel Foreman-Mackey, Daniel Gibson, Neale P. Kreidberg, Laura Line, Michael R. López-Morales, Mercedes Molaverdikhani, Karan Moran, Sarah E. Morello, Giuseppe Moses, Julianne I. Mukherjee, Sagnick Schlawin, Everett Sing, David K. Stevenson, Kevin B. Taylor, Jake Aggarwal, Keshav Ahrer, Eva-Maria Allen, Natalie H. Barstow, Joanna K. Bell, Taylor J. Blecic, Jasmina Casewell, Sarah L. Chubb, Katy L. Crouzet, Nicolas Cubillos, Patricio E. Decin, Leen Feinstein, Adina D. Fortney, Joanthan J. Harrington, Joseph Heng, Kevin Iro, Nicolas Kempton, Eliza M.-R. Kirk, James Knutson, Heather A. Krick, Jessica Leconte, Jérémy Lendl, Monika MacDonald, Ryan J. Mancini, Luigi Mansfield, Megan May, Erin M. Mayne, Nathan J. Miguel, Yamila Nikolov, Nikolay K. Ohno, Kazumasa Palle, Enric Parmentier, Vivien Petit dit de la Roche, Dominique J. M. Piaulet, Caroline Powell, Diana Rackham, Benjamin V. Redfield, Seth Rogers, Laura K. Rustamkulov, Zafar Tan, Xianyu Tremblin, P. Tsai, Shang-Min Turner, Jake D. de Val-Borro, Miguel Venot, Olivia Welbanks, Luis Wheatley, Peter J. Zhang, Xi Nature Article Measuring the abundances of carbon and oxygen in exoplanet atmospheres is considered a crucial avenue for unlocking the formation and evolution of exoplanetary systems(1,2). Access to the chemical inventory of an exoplanet requires high-precision observations, often inferred from individual molecular detections with low-resolution space-based(3–5) and high-resolution ground-based(6–8) facilities. Here we report the medium-resolution (R ≈ 600) transmission spectrum of an exoplanet atmosphere between 3 and 5 μm covering several absorption features for the Saturn-mass exoplanet WASP-39b (ref. (9)), obtained with the Near Infrared Spectrograph (NIRSpec) G395H grating of JWST. Our observations achieve 1.46 times photon precision, providing an average transit depth uncertainty of 221 ppm per spectroscopic bin, and present minimal impacts from systematic effects. We detect significant absorption from CO(2) (28.5σ) and H(2)O (21.5σ), and identify SO(2) as the source of absorption at 4.1 μm (4.8σ). Best-fit atmospheric models range between 3 and 10 times solar metallicity, with sub-solar to solar C/O ratios. These results, including the detection of SO(2), underscore the importance of characterizing the chemistry in exoplanet atmospheres and showcase NIRSpec G395H as an excellent mode for time-series observations over this critical wavelength range(10). Nature Publishing Group UK 2023-01-09 2023 /pmc/articles/PMC9946835/ /pubmed/36623549 http://dx.doi.org/10.1038/s41586-022-05591-3 Text en © The Author(s) 2023 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons licence, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons licence and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this licence, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) . |
spellingShingle | Article Alderson, Lili Wakeford, Hannah R. Alam, Munazza K. Batalha, Natasha E. Lothringer, Joshua D. Adams Redai, Jea Barat, Saugata Brande, Jonathan Damiano, Mario Daylan, Tansu Espinoza, Néstor Flagg, Laura Goyal, Jayesh M. Grant, David Hu, Renyu Inglis, Julie Lee, Elspeth K. H. Mikal-Evans, Thomas Ramos-Rosado, Lakeisha Roy, Pierre-Alexis Wallack, Nicole L. Batalha, Natalie M. Bean, Jacob L. Benneke, Björn Berta-Thompson, Zachory K. Carter, Aarynn L. Changeat, Quentin Colón, Knicole D. Crossfield, Ian J. M. Désert, Jean-Michel Foreman-Mackey, Daniel Gibson, Neale P. Kreidberg, Laura Line, Michael R. López-Morales, Mercedes Molaverdikhani, Karan Moran, Sarah E. Morello, Giuseppe Moses, Julianne I. Mukherjee, Sagnick Schlawin, Everett Sing, David K. Stevenson, Kevin B. Taylor, Jake Aggarwal, Keshav Ahrer, Eva-Maria Allen, Natalie H. Barstow, Joanna K. Bell, Taylor J. Blecic, Jasmina Casewell, Sarah L. Chubb, Katy L. Crouzet, Nicolas Cubillos, Patricio E. Decin, Leen Feinstein, Adina D. Fortney, Joanthan J. Harrington, Joseph Heng, Kevin Iro, Nicolas Kempton, Eliza M.-R. Kirk, James Knutson, Heather A. Krick, Jessica Leconte, Jérémy Lendl, Monika MacDonald, Ryan J. Mancini, Luigi Mansfield, Megan May, Erin M. Mayne, Nathan J. Miguel, Yamila Nikolov, Nikolay K. Ohno, Kazumasa Palle, Enric Parmentier, Vivien Petit dit de la Roche, Dominique J. M. Piaulet, Caroline Powell, Diana Rackham, Benjamin V. Redfield, Seth Rogers, Laura K. Rustamkulov, Zafar Tan, Xianyu Tremblin, P. Tsai, Shang-Min Turner, Jake D. de Val-Borro, Miguel Venot, Olivia Welbanks, Luis Wheatley, Peter J. Zhang, Xi Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H |
title | Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H |
title_full | Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H |
title_fullStr | Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H |
title_full_unstemmed | Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H |
title_short | Early Release Science of the exoplanet WASP-39b with JWST NIRSpec G395H |
title_sort | early release science of the exoplanet wasp-39b with jwst nirspec g395h |
topic | Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9946835/ https://www.ncbi.nlm.nih.gov/pubmed/36623549 http://dx.doi.org/10.1038/s41586-022-05591-3 |
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