Potential Chromospheric Evaporation in A M-dwarf's Flare Triggered by Einstein Probe Mission

Fuente: arXiv
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Main Authors: Wang, J., Mao, X., Gao, C., Liu, H. Y., Li, H. L., Pan, H. W., Wu, C., Liu, Y., Li, G. W., Xin, L. P., Jin, S., Xu, D. W., Liang, E. W., Yuan, W. M., Wei, J. Y.
Format: Preprint
Published: 2024
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author Wang, J.
Mao, X.
Gao, C.
Liu, H. Y.
Li, H. L.
Pan, H. W.
Wu, C.
Liu, Y.
Li, G. W.
Xin, L. P.
Jin, S.
Xu, D. W.
Liang, E. W.
Yuan, W. M.
Wei, J. Y.
author_facet Wang, J.
Mao, X.
Gao, C.
Liu, H. Y.
Li, H. L.
Pan, H. W.
Wu, C.
Liu, Y.
Li, G. W.
Xin, L. P.
Jin, S.
Xu, D. W.
Liang, E. W.
Yuan, W. M.
Wei, J. Y.
contents Although flares from late-type main-sequence stars have been frequently detected in multi-wavelength, the associated dynamical process has been rarely reported so far. Here, we report follow-up observations of an X-ray transient triggered by WXT onboard the Einstein Probe at UT08:45:08 in 2024, May 7. The photometry in multi-bands and time-resolved spectroscopy started at 3 and 7.5 hours after the trigger, respectively, which enables us to identify the transient as a flare of the M-dwarf 2MASS J12184187-0609123. The bolometric energy released in the flare is estimated to be $\sim10^{36}\ \mathrm{erg}$ from its X-ray light curve. The H$α$ emission-line profile obtained at about 7 hours after the trigger shows an evident blue asymmetry with a maximum velocity of $200-250\ \mathrm{km\ s^{-1}}$. The blue wing can be likely explained by the chromospheric temperature (cool) upflow associated with chromospheric evaporation, in which the mass of the evaporating plasma is estimated to be $1.2\times10^{18}$g. In addition, a prominence eruption with an estimated mass of $7\times10^{15}\mathrm{g}<M_{\mathrm{p}}<7\times10^{18}\mathrm{g}$ can not be entirely excluded.
format Preprint
id arxiv_https___arxiv_org_abs_2410_03114
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Potential Chromospheric Evaporation in A M-dwarf's Flare Triggered by Einstein Probe Mission
Wang, J.
Mao, X.
Gao, C.
Liu, H. Y.
Li, H. L.
Pan, H. W.
Wu, C.
Liu, Y.
Li, G. W.
Xin, L. P.
Jin, S.
Xu, D. W.
Liang, E. W.
Yuan, W. M.
Wei, J. Y.
Solar and Stellar Astrophysics
Although flares from late-type main-sequence stars have been frequently detected in multi-wavelength, the associated dynamical process has been rarely reported so far. Here, we report follow-up observations of an X-ray transient triggered by WXT onboard the Einstein Probe at UT08:45:08 in 2024, May 7. The photometry in multi-bands and time-resolved spectroscopy started at 3 and 7.5 hours after the trigger, respectively, which enables us to identify the transient as a flare of the M-dwarf 2MASS J12184187-0609123. The bolometric energy released in the flare is estimated to be $\sim10^{36}\ \mathrm{erg}$ from its X-ray light curve. The H$α$ emission-line profile obtained at about 7 hours after the trigger shows an evident blue asymmetry with a maximum velocity of $200-250\ \mathrm{km\ s^{-1}}$. The blue wing can be likely explained by the chromospheric temperature (cool) upflow associated with chromospheric evaporation, in which the mass of the evaporating plasma is estimated to be $1.2\times10^{18}$g. In addition, a prominence eruption with an estimated mass of $7\times10^{15}\mathrm{g}<M_{\mathrm{p}}<7\times10^{18}\mathrm{g}$ can not be entirely excluded.
title Potential Chromospheric Evaporation in A M-dwarf's Flare Triggered by Einstein Probe Mission
topic Solar and Stellar Astrophysics
url https://arxiv.org/abs/2410.03114