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A superflare of BP Tau simultaneously caught by EP X-ray and TESS optical observations

Xingyu Zhou, Mingjun Liu, Gregory J. Herczeg, P. Christian Schneider, Fabio Favata, Chenwei Yang, Chichuan Jin, Dongyue Li, Xuan Mao, Yi-Han Iris Yin, Minghao Zhang, Weimin Yuan, Hongyan Zhou

astro-ph.SRarXiv:2608.22576

Abstract

Multiwavelength observations of stellar flares trace the activity of different components of the stars' outer atmosphere, providing insight into their interactions. In the present paper, we report a superflare from BP Tau, simultaneously observed with the Wide-field X-ray Telescope (WXT) on board the Einstein Probe (EP) satellite and TESS. While we attribute the X-ray flux increase to a magnetically powered flare, the optical light curve likely results from the superposition of the flare and an accretion burst. The X-ray flare has a mean flux of (1.5+0.3-0.4)×10-11 erg cm-2 s-1 in the WXT energy band (0.5-4.0 keV), with e-folding times of 1.71.0 ks and 145 ks for the rise and decay phase, respectively. The corresponding time-integrated flare energy is (1.0 0.2)× 1036 erg. The optical flare has an e-folding time of 0.330.04 ks for the rise phase, but the data do not constrain the decay timescale. Assuming a decay phase equal to the rise phase, the resulting optical flare energy is (2.80.4)×1034 erg in the TESS band (6,000-10,000 Å), corresponding to a bolometric energy of (1.90.3)×1035 erg (assuming a blackbody at 11000 K). The Follow-up X-ray Telescope (FXT) on EP triggered an observation 1.5 day after the flare, with a flux of (4.6+0.2-0.5)×10-13 erg cm-2 s-1 (0.5-10.0 keV), indicating that BP Tau had returned to quiescence. This work demonstrates the potential of jointly analyzing EP and TESS data for superflares. WXT is expected to detect 800 superflares per year, with FXT capable of slewing to the flaring star within 3-5 minutes. The large field of view of both missions offers us the opportunity to study multiwavelength variability during energetic flares.

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