Stellar surface information from the Ca II H&K lines -- II. Defining better activity proxies

Fuente: arXiv
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Main Authors: Cretignier, M., Hara, N. C., Pietrow, A. G. M., Zhao, Y., Yu, H., Dumusque, X., Sozzetti, A., Lovis, C., Aigrain, S.
Format: Preprint
Published: 2024
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author Cretignier, M.
Hara, N. C.
Pietrow, A. G. M.
Zhao, Y.
Yu, H.
Dumusque, X.
Sozzetti, A.
Lovis, C.
Aigrain, S.
author_facet Cretignier, M.
Hara, N. C.
Pietrow, A. G. M.
Zhao, Y.
Yu, H.
Dumusque, X.
Sozzetti, A.
Lovis, C.
Aigrain, S.
contents In our former paper I, we showed on the Sun that different active regions possess unique intensity profiles on the Ca II H & K lines. We now extend the analysis by showing how those properties can be used on real stellar observations, delivering more powerful activity proxies for radial velocity correction. More information can be extracted on rotational timescale from the Ca II H & K lines than the classical indicators: S-index and log(R'HK). For high-resolution HARPS observations of alpha Cen B, we apply a principal and independent component analysis on the Ca II H & K spectra time-series to disentangle the different sources that contribute to the disk-integrated line profiles. While the first component can be understood as a denoised version of the Mount-Wilson S-index, the second component appears as powerful activity proxies to correct the RVs induced by the inhibition of the convective blueshift in stellar active regions. However, we failed to interpret the extracted component into a physical framework. We conclude that a more complex kernel or bandpass than the classical triangular of the Mount Wilson convention should be used to extract activity proxies. To this regard, we provide the first principal component activity profile obtained across the spectral type sequence between M1V to F9V type stars.
format Preprint
id arxiv_https___arxiv_org_abs_2411_00557
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Stellar surface information from the Ca II H&K lines -- II. Defining better activity proxies
Cretignier, M.
Hara, N. C.
Pietrow, A. G. M.
Zhao, Y.
Yu, H.
Dumusque, X.
Sozzetti, A.
Lovis, C.
Aigrain, S.
Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
In our former paper I, we showed on the Sun that different active regions possess unique intensity profiles on the Ca II H & K lines. We now extend the analysis by showing how those properties can be used on real stellar observations, delivering more powerful activity proxies for radial velocity correction. More information can be extracted on rotational timescale from the Ca II H & K lines than the classical indicators: S-index and log(R'HK). For high-resolution HARPS observations of alpha Cen B, we apply a principal and independent component analysis on the Ca II H & K spectra time-series to disentangle the different sources that contribute to the disk-integrated line profiles. While the first component can be understood as a denoised version of the Mount-Wilson S-index, the second component appears as powerful activity proxies to correct the RVs induced by the inhibition of the convective blueshift in stellar active regions. However, we failed to interpret the extracted component into a physical framework. We conclude that a more complex kernel or bandpass than the classical triangular of the Mount Wilson convention should be used to extract activity proxies. To this regard, we provide the first principal component activity profile obtained across the spectral type sequence between M1V to F9V type stars.
title Stellar surface information from the Ca II H&K lines -- II. Defining better activity proxies
topic Solar and Stellar Astrophysics
Earth and Planetary Astrophysics
url https://arxiv.org/abs/2411.00557