Doppler imaging combined with high-cadence photometry. I. Revisiting the surface of a pre-main-sequence flare star

Fuente: arXiv
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Main Authors: Lee, Sanghee, Bahar, Engin, Şenavcı, Hakan Volkan, Işık, Emre, Ikuta, Kai, Namekata, Kosuke, Nagata, Haruhi, Kawauchi, Kiyoe, Omiya, Masashi, Izumiura, Hideyuki, Tajitsu, Akito, Sato, Bun'ei, Honda, Satoshi, Nogami, Daisaku
Format: Preprint
Published: 2025
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author Lee, Sanghee
Bahar, Engin
Şenavcı, Hakan Volkan
Işık, Emre
Ikuta, Kai
Namekata, Kosuke
Nagata, Haruhi
Kawauchi, Kiyoe
Omiya, Masashi
Izumiura, Hideyuki
Tajitsu, Akito
Sato, Bun'ei
Honda, Satoshi
Nogami, Daisaku
author_facet Lee, Sanghee
Bahar, Engin
Şenavcı, Hakan Volkan
Işık, Emre
Ikuta, Kai
Namekata, Kosuke
Nagata, Haruhi
Kawauchi, Kiyoe
Omiya, Masashi
Izumiura, Hideyuki
Tajitsu, Akito
Sato, Bun'ei
Honda, Satoshi
Nogami, Daisaku
contents Latitude distribution of stellar magnetic activity is not well constrained by observations, despite its importance for a better understanding of stellar dynamos. We aim to obtain an accurate reconstruction of the surface spot distribution on the young, rapidly rotating K2 star PW And by combining spectroscopic and photometric diagnostics. In particular, we seek to assess how the inclusion of continuous high-precision TESS photometry in parallel with high-resolution spectroscopy improves latitude recovery of starspots, especially at low latitudes and in the southern hemisphere, which are poorly constrained by Doppler imaging (DI) alone. We explore the spatial origins of the observed white-light flares. We performed simultaneous Doppler imaging and light curve inversion (DI+LCI) using contemporaneous high-resolution GAOES-RV spectra from the 3.8 m Seimei telescope (R~65000) and high-precision TESS light curves. Surface reconstructions employ the SpotDIPy code to model both line profiles and continuum brightness variations. We compare DI+LCI maps with DI-only solutions, conduct artificial-spot simulations to evaluate the effects of latitude, phase coverage, and S/N on reconstruction reliability. We also investigate the spatial correlation between the DI+LCI reconstructed map and flares detected in the TESS data. The DI+LCI reconstruction reveals significant spot features at mid-to-low latitudes, equatorial regions, and even in the southern hemisphere. Simulations show that DI+LCI provides more accurate reconstructions than DI-only, especially under conditions of incomplete phase coverage and low S/N, by better recovering both spot latitudes and filling factors. A comparison between the DI+LCI map and the TESS flare timings also suggests potential association between flare occurrence and reconstructed spot longitudes.
format Preprint
id arxiv_https___arxiv_org_abs_2511_12190
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Doppler imaging combined with high-cadence photometry. I. Revisiting the surface of a pre-main-sequence flare star
Lee, Sanghee
Bahar, Engin
Şenavcı, Hakan Volkan
Işık, Emre
Ikuta, Kai
Namekata, Kosuke
Nagata, Haruhi
Kawauchi, Kiyoe
Omiya, Masashi
Izumiura, Hideyuki
Tajitsu, Akito
Sato, Bun'ei
Honda, Satoshi
Nogami, Daisaku
Solar and Stellar Astrophysics
Latitude distribution of stellar magnetic activity is not well constrained by observations, despite its importance for a better understanding of stellar dynamos. We aim to obtain an accurate reconstruction of the surface spot distribution on the young, rapidly rotating K2 star PW And by combining spectroscopic and photometric diagnostics. In particular, we seek to assess how the inclusion of continuous high-precision TESS photometry in parallel with high-resolution spectroscopy improves latitude recovery of starspots, especially at low latitudes and in the southern hemisphere, which are poorly constrained by Doppler imaging (DI) alone. We explore the spatial origins of the observed white-light flares. We performed simultaneous Doppler imaging and light curve inversion (DI+LCI) using contemporaneous high-resolution GAOES-RV spectra from the 3.8 m Seimei telescope (R~65000) and high-precision TESS light curves. Surface reconstructions employ the SpotDIPy code to model both line profiles and continuum brightness variations. We compare DI+LCI maps with DI-only solutions, conduct artificial-spot simulations to evaluate the effects of latitude, phase coverage, and S/N on reconstruction reliability. We also investigate the spatial correlation between the DI+LCI reconstructed map and flares detected in the TESS data. The DI+LCI reconstruction reveals significant spot features at mid-to-low latitudes, equatorial regions, and even in the southern hemisphere. Simulations show that DI+LCI provides more accurate reconstructions than DI-only, especially under conditions of incomplete phase coverage and low S/N, by better recovering both spot latitudes and filling factors. A comparison between the DI+LCI map and the TESS flare timings also suggests potential association between flare occurrence and reconstructed spot longitudes.
title Doppler imaging combined with high-cadence photometry. I. Revisiting the surface of a pre-main-sequence flare star
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2511.12190