A Compact, Coherent Representation of Stellar Surface Variation in the Spectral Domain

Fuente: arXiv
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Autori principali: Zhao, Lily L., Bedell, Megan E., Hogg, David W., Luger, Rodrigo
Natura: Preprint
Pubblicazione: 2024
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author Zhao, Lily L.
Bedell, Megan E.
Hogg, David W.
Luger, Rodrigo
author_facet Zhao, Lily L.
Bedell, Megan E.
Hogg, David W.
Luger, Rodrigo
contents Time-varying inhomogeneities on stellar surfaces constitute one of the largest sources of radial velocity (RV) error for planet detection and characterization. We show that stellar variations, because they manifest on coherent, rotating surfaces, give rise to changes that are complex but useably compact and coherent in the spectral domain. Methods for disentangling stellar signals in RV measurements benefit from modeling the full domain of spectral pixels. We simulate spectra of spotted stars using starry and construct a simple spectrum projection space that is sensitive to the orientation and size of stellar surface features. Regressing measured RVs in this projection space reduces RV scatter by 60-80% while preserving planet shifts. We note that stellar surface variability signals do not manifest in spectral changes that are purely orthogonal to a Doppler shift or exclusively asymmetric in line profiles; enforcing orthogonality or focusing exclusively on asymmetric features will not make use of all the information present in the spectra. We conclude with a discussion of existing and possible implementations on real data based on the presented compact, coherent framework for stellar signal mitigation.
format Preprint
id arxiv_https___arxiv_org_abs_2411_04947
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A Compact, Coherent Representation of Stellar Surface Variation in the Spectral Domain
Zhao, Lily L.
Bedell, Megan E.
Hogg, David W.
Luger, Rodrigo
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Time-varying inhomogeneities on stellar surfaces constitute one of the largest sources of radial velocity (RV) error for planet detection and characterization. We show that stellar variations, because they manifest on coherent, rotating surfaces, give rise to changes that are complex but useably compact and coherent in the spectral domain. Methods for disentangling stellar signals in RV measurements benefit from modeling the full domain of spectral pixels. We simulate spectra of spotted stars using starry and construct a simple spectrum projection space that is sensitive to the orientation and size of stellar surface features. Regressing measured RVs in this projection space reduces RV scatter by 60-80% while preserving planet shifts. We note that stellar surface variability signals do not manifest in spectral changes that are purely orthogonal to a Doppler shift or exclusively asymmetric in line profiles; enforcing orthogonality or focusing exclusively on asymmetric features will not make use of all the information present in the spectra. We conclude with a discussion of existing and possible implementations on real data based on the presented compact, coherent framework for stellar signal mitigation.
title A Compact, Coherent Representation of Stellar Surface Variation in the Spectral Domain
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2411.04947