Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS

Aims. We report on observations of the active K2 dwarf ϵ Eridani based on contemporaneous SPIRou, NARVAL and TESS data obtained over two months in late 2018, when the activity of the star was reported to be in a non-cyclic phase. Methods. Near-infrared (NIR) spectropolarimetry was obtained using SPI...

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Published in:Astronomy & Astrophysics
Main Authors: Petit, P., Folsom, C., Donati, J., Yu, L., Do Nascimento, J., Jeffers, S., Marsden, S., Morin, J., Vidotto, A.
Format: Article in Journal/Newspaper
Language:English
Published: 2021
Subjects:
Online Access:http://hdl.handle.net/21.11116/0000-0008-E31A-B
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spelling ftpubman:oai:pure.mpg.de:item_3326756 2023-08-27T04:12:35+02:00 Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS Petit, P. Folsom, C. Donati, J. Yu, L. Do Nascimento, J. Jeffers, S. Marsden, S. Morin, J. Vidotto, A. 2021 http://hdl.handle.net/21.11116/0000-0008-E31A-B eng eng info:eu-repo/semantics/altIdentifier/doi/10.1051/0004-6361/202040027 http://hdl.handle.net/21.11116/0000-0008-E31A-B Astronomy and Astrophysics info:eu-repo/semantics/article 2021 ftpubman https://doi.org/10.1051/0004-6361/202040027 2023-08-02T00:39:51Z Aims. We report on observations of the active K2 dwarf ϵ Eridani based on contemporaneous SPIRou, NARVAL and TESS data obtained over two months in late 2018, when the activity of the star was reported to be in a non-cyclic phase. Methods. Near-infrared (NIR) spectropolarimetry was obtained using SPIRou over four nights in late September, while visible spectropolarimetry was collected with NARVAL over 20 nights, spread between 18 September and 07 November. We first recovered the fundamental parameters of the target from both visible and NIR spectral fitting. The large-scale magnetic field was investigated from polarimetric data. From unpolarized spectra, we estimated the total magnetic flux through Zeeman broadening of magnetically sensitive NIR lines and the chromospheric emission using the CaII H&K lines. The photometric monitoring, secured with TESS between 19 October and 15 November, is modelled with pseudo-periodic Gaussian process regression. Results. Fundamental parameters of ϵ Eridani derived from visible and NIR wavelengths provide us with consistent results, which also agree with published values. We report a progressive increase of macroturbulence towards larger NIR wavelengths. Zeeman broadening of individual lines highlights an unsigned surface magnetic field B mono = 1.90 ± 0.13 kG, with a filling factor f = 12.5 ± 1.7% (unsigned magnetic flux Bf = 237 ± 36 G). The large-scale magnetic field geometry, chromospheric emission and broadband photometry display clear signs of non-rotational evolution over the course of data collection. Characteristic decay times deduced from the light curve and longitudinal field fall in the range 30–40 days, while the characteristic timescale of surface differential rotation, as derived through the evolution of the magnetic geometry, is equal to 57 ± 5 days. The large-scale magnetic field exhibits a combination of properties not observed previously for ϵ Eridani, with a surface field among the weakest previously reported, but this field is also mostly axisymmetric, ... Article in Journal/Newspaper narval narval Max Planck Society: MPG.PuRe Astronomy & Astrophysics 648 A55
institution Open Polar
collection Max Planck Society: MPG.PuRe
op_collection_id ftpubman
language English
description Aims. We report on observations of the active K2 dwarf ϵ Eridani based on contemporaneous SPIRou, NARVAL and TESS data obtained over two months in late 2018, when the activity of the star was reported to be in a non-cyclic phase. Methods. Near-infrared (NIR) spectropolarimetry was obtained using SPIRou over four nights in late September, while visible spectropolarimetry was collected with NARVAL over 20 nights, spread between 18 September and 07 November. We first recovered the fundamental parameters of the target from both visible and NIR spectral fitting. The large-scale magnetic field was investigated from polarimetric data. From unpolarized spectra, we estimated the total magnetic flux through Zeeman broadening of magnetically sensitive NIR lines and the chromospheric emission using the CaII H&K lines. The photometric monitoring, secured with TESS between 19 October and 15 November, is modelled with pseudo-periodic Gaussian process regression. Results. Fundamental parameters of ϵ Eridani derived from visible and NIR wavelengths provide us with consistent results, which also agree with published values. We report a progressive increase of macroturbulence towards larger NIR wavelengths. Zeeman broadening of individual lines highlights an unsigned surface magnetic field B mono = 1.90 ± 0.13 kG, with a filling factor f = 12.5 ± 1.7% (unsigned magnetic flux Bf = 237 ± 36 G). The large-scale magnetic field geometry, chromospheric emission and broadband photometry display clear signs of non-rotational evolution over the course of data collection. Characteristic decay times deduced from the light curve and longitudinal field fall in the range 30–40 days, while the characteristic timescale of surface differential rotation, as derived through the evolution of the magnetic geometry, is equal to 57 ± 5 days. The large-scale magnetic field exhibits a combination of properties not observed previously for ϵ Eridani, with a surface field among the weakest previously reported, but this field is also mostly axisymmetric, ...
format Article in Journal/Newspaper
author Petit, P.
Folsom, C.
Donati, J.
Yu, L.
Do Nascimento, J.
Jeffers, S.
Marsden, S.
Morin, J.
Vidotto, A.
spellingShingle Petit, P.
Folsom, C.
Donati, J.
Yu, L.
Do Nascimento, J.
Jeffers, S.
Marsden, S.
Morin, J.
Vidotto, A.
Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS
author_facet Petit, P.
Folsom, C.
Donati, J.
Yu, L.
Do Nascimento, J.
Jeffers, S.
Marsden, S.
Morin, J.
Vidotto, A.
author_sort Petit, P.
title Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS
title_short Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS
title_full Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS
title_fullStr Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS
title_full_unstemmed Multi-instrumental view of magnetic fields and activity of ϵ Eridani with SPIRou, NARVAL, and TESS
title_sort multi-instrumental view of magnetic fields and activity of ϵ eridani with spirou, narval, and tess
publishDate 2021
url http://hdl.handle.net/21.11116/0000-0008-E31A-B
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op_source Astronomy and Astrophysics
op_relation info:eu-repo/semantics/altIdentifier/doi/10.1051/0004-6361/202040027
http://hdl.handle.net/21.11116/0000-0008-E31A-B
op_doi https://doi.org/10.1051/0004-6361/202040027
container_title Astronomy & Astrophysics
container_volume 648
container_start_page A55
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