Doppler-shifted Signatures in the Chromospheric Line Profiles of II Pegasi
Cao Dongtao, Gu shenghong
astro-ph.SR
Submitted: 2026-08-05
Journal ref: 2025ApJ...991...54C
License: http://creativecommons.org/licenses/by/4.0/
The gist: Stellar flares are frequently accompanied by prominence eruptions, coronal mass ejections (CMEs), and other forms of plasma motion.
Terminology
Abstract
Stellar flares are frequently accompanied by prominence eruptions, coronal mass ejections (CMEs), and other forms of plasma motion. Based on the long-term high-resolution spectroscopic monitoring data set of the RS CVn-type star II Pegasi (II Peg), we search for stellar prominence eruptions and potential CMEs by investigating asymmetric signatures in the H alpha and H beta line profiles during the flare events. We observed seven optical flares with asymmetric spectral profiles, releasing low limit energies of 10 33 -- 10 34 erg in the H alpha line. Five of these flares were associated with six potential CMEs, identified through the Doppler-shifted emission signatures in the chromospheric line profiles, particularly the H alpha line. The mass estimates for the CME candidates range from 10 19 to 10 20 g, while the kinetic energies are calculated to be around 10 33 -- 10 34 erg. The most massive CME candidate was simultaneously recorded in the H alpha, H beta, and He I D 3 lines. For II Peg, the possible flare-CME association rate is about 30%. There were also some redshifted excess absorption signatures in the H alpha line profiles. These signatures could not only be observed in the flaring spectra but also in the spectra without flare, which could be interpreted as features resulting from flare-driven coronal rain and quiescent rain, respectively.
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