ExoGemS The Effect of Offsets from True Orbital Parameters on Exoplanet High-Resolution Transmission Spectra

Fuente: arXiv
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Autores principales: Meziani, Yasmine J., Flagg, Laura, Turner, Jake D., Deibert, Emily K., Jayawardhana, Ray, Langeveld, Adam B., de Mooij, Ernst J. W.
Formato: Preprint
Publicado: 2025
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author Meziani, Yasmine J.
Flagg, Laura
Turner, Jake D.
Deibert, Emily K.
Jayawardhana, Ray
Langeveld, Adam B.
de Mooij, Ernst J. W.
author_facet Meziani, Yasmine J.
Flagg, Laura
Turner, Jake D.
Deibert, Emily K.
Jayawardhana, Ray
Langeveld, Adam B.
de Mooij, Ernst J. W.
contents High-resolution spectroscopy (HRS) plays a crucial role in characterizing exoplanet atmospheres, revealing detailed information about their chemical composition, temperatures, and dynamics. However, inaccuracies in orbital parameters can affect the result of HRS analyses. In this paper, we simulated HRS observations of an exoplanet's transit to model the effects of an offset in transit midpoint or eccentricity on the resulting spectra. We derived analytical equations to relate an offset in transit midpoint or eccentricity to shifted velocities, and compared it with velocities measured from simulated HRS observations. Additionally, we compared velocity shifts in the spectrum of the ultra-hot Jupiter WASP-76b using previously reported and newly measured transit times. We found that transit midpoint offsets on the order of minutes, combined with eccentricity offsets of approximately $0.1$, lead to significant shifts in velocities, yielding measurements on the order of several kilometers per second. Thus, such uncertainties could conflate derived wind measurements.
format Preprint
id arxiv_https___arxiv_org_abs_2507_11708
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle ExoGemS The Effect of Offsets from True Orbital Parameters on Exoplanet High-Resolution Transmission Spectra
Meziani, Yasmine J.
Flagg, Laura
Turner, Jake D.
Deibert, Emily K.
Jayawardhana, Ray
Langeveld, Adam B.
de Mooij, Ernst J. W.
Earth and Planetary Astrophysics
High-resolution spectroscopy (HRS) plays a crucial role in characterizing exoplanet atmospheres, revealing detailed information about their chemical composition, temperatures, and dynamics. However, inaccuracies in orbital parameters can affect the result of HRS analyses. In this paper, we simulated HRS observations of an exoplanet's transit to model the effects of an offset in transit midpoint or eccentricity on the resulting spectra. We derived analytical equations to relate an offset in transit midpoint or eccentricity to shifted velocities, and compared it with velocities measured from simulated HRS observations. Additionally, we compared velocity shifts in the spectrum of the ultra-hot Jupiter WASP-76b using previously reported and newly measured transit times. We found that transit midpoint offsets on the order of minutes, combined with eccentricity offsets of approximately $0.1$, lead to significant shifts in velocities, yielding measurements on the order of several kilometers per second. Thus, such uncertainties could conflate derived wind measurements.
title ExoGemS The Effect of Offsets from True Orbital Parameters on Exoplanet High-Resolution Transmission Spectra
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2507.11708