J. Wang, W. J. Xie, F. Cangemi, A. Coleiro, H. L. Li, Y. Xu, X. H. Han, H. Yang, L. P. Xin, X. Mao, J. Zheng, J. J. Jin, G. W. Li, J. Rodriguez, L. Tao, B. Cordier, J. Y. Wei, P. Bacon, N. Bellemont, L. Bouchet, H. B. Cai, C. Cavet, Z. G. Dai, O. Godet, A. Goldwurm, S. Guillot, L. Huang, M. H. Huang, N. Jiang, E. W. Liang, X. M. Lu, S. Schanne, S. Le Stum, Y. L. Qiu, X. G. Wang, X. Y. Wang, C. Wu, L. Zhang, S. N. Zhang, S. J. Zheng
Abstract Detection of stellar flares at hard X-ray is still rare at the current stage. A transient was recently detected by the hard X-ray camera ECLAIRs on board the SVOM mission at 11:39:01.2 UT on 2025 January 09. Simultaneous monitoring in the optical band on the ground by SVOM/GWAC and follow-up spectroscopy enabled us to confirm that the transient is caused by a superflare on HD 22468, an RS CVn–type star. The bolometric energy released in the flare is estimated to be ∼7.2 × 10 37 –1.7 × 10 38 erg. The hard X-ray spectra of the event at the peak can be reproduced by the “apec” model of a hot plasma with a temperature of 10 6 − 22 + 27 MK. In the optical range, the H α emission-line profile obtained at ∼1.7 hr after the trigger shows a bulk blueshift of −96 ± 20 km s −1 , which can be explained by either a chromospheric evaporation or a prominence eruption. The ejected mass is estimated to be 3.9 × 10 20 g for the evaporating plasma and to be 3.2 × 10 21 g < M p < 8.8 × 10 21 g for the erupted prominence.