Doppler Tomography as a tool for characterising exoplanet atmospheres II: an analysis of HD 179949 b

Fuente: arXiv
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Autori principali: Matthews, S. M., Watson, C. A., de Mooij, E. J. W., Marsh, T. R., Brogi, M., Merritt, S. R., Smith, K. W., Steeghs, D.
Natura: Preprint
Pubblicazione: 2024
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author Matthews, S. M.
Watson, C. A.
de Mooij, E. J. W.
Marsh, T. R.
Brogi, M.
Merritt, S. R.
Smith, K. W.
Steeghs, D.
author_facet Matthews, S. M.
Watson, C. A.
de Mooij, E. J. W.
Marsh, T. R.
Brogi, M.
Merritt, S. R.
Smith, K. W.
Steeghs, D.
contents High-resolution Doppler spectroscopy provides an avenue to study the atmosphere of both transiting and non-transiting planets. This powerful method has also yielded some of the most robust atmospheric detections to date. Currently, high-resolution Doppler spectroscopy detects atmospheric signals by cross-correlating observed data with a model atmospheric spectrum. This technique has been successful in detecting various molecules such as H2O, CO, HCN and TiO, as well as several atomic species. Here we present an alternative method of performing high-resolution Doppler spectroscopy, using a technique known as Doppler tomography. We present an analysis of HD 179949 b using Doppler tomography and provide Doppler tomograms confirming previous detections of CO at 2.3 microns, and H2O at both 2.3 microns, and 3.5 microns within the atmosphere of HD 179949 b, showing significantly lower background noise levels when compared to cross-correlation methods applied to the same data. We also present a novel detection of H2O at 2.1 microns, as well as a tentative detection of CO on the night side of the planet at 2.3 microns. This represents the first observational evidence for molecular absorption in the night-side emission spectrum of an exoplanet using Doppler spectroscopy.
format Preprint
id arxiv_https___arxiv_org_abs_2404_05652
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Doppler Tomography as a tool for characterising exoplanet atmospheres II: an analysis of HD 179949 b
Matthews, S. M.
Watson, C. A.
de Mooij, E. J. W.
Marsh, T. R.
Brogi, M.
Merritt, S. R.
Smith, K. W.
Steeghs, D.
Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
High-resolution Doppler spectroscopy provides an avenue to study the atmosphere of both transiting and non-transiting planets. This powerful method has also yielded some of the most robust atmospheric detections to date. Currently, high-resolution Doppler spectroscopy detects atmospheric signals by cross-correlating observed data with a model atmospheric spectrum. This technique has been successful in detecting various molecules such as H2O, CO, HCN and TiO, as well as several atomic species. Here we present an alternative method of performing high-resolution Doppler spectroscopy, using a technique known as Doppler tomography. We present an analysis of HD 179949 b using Doppler tomography and provide Doppler tomograms confirming previous detections of CO at 2.3 microns, and H2O at both 2.3 microns, and 3.5 microns within the atmosphere of HD 179949 b, showing significantly lower background noise levels when compared to cross-correlation methods applied to the same data. We also present a novel detection of H2O at 2.1 microns, as well as a tentative detection of CO on the night side of the planet at 2.3 microns. This represents the first observational evidence for molecular absorption in the night-side emission spectrum of an exoplanet using Doppler spectroscopy.
title Doppler Tomography as a tool for characterising exoplanet atmospheres II: an analysis of HD 179949 b
topic Earth and Planetary Astrophysics
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2404.05652