Xuan Mao, He-Yang Liu, Song Wang, Zhixing Ling, Weimin Yuan, Huaqing Cheng, Haiwu Pan, Dongyue Li, Fabio Favata, Tuo Ji, Jujia Zhang, Xinlin Zhao, Jing Wang, Mingjun Liu, Yuan Liu, Zhiming Cai, Alberto J. Castro-Tirado, Yanfeng Dai, Licai Deng, Xu Ding, Kaifan Ji, Chichuan Jin, Yajuan Lei, Huali Li, Jun Lin, Huaqiu Liu, Shuai Liu, Hui Sun, Shengli Sun, Xiaojin Sun, Jianrong Shi, Jianguo Wang, Jingxiu Wang, Wenxin Wang, Jianyan Wei, Liping Xin, Dingrong Xiong, Chen Zhang, Wenda Zhang, Yonghe Zhang, Xiaofeng Zhang, Donghua Zhao and Guiping Zhou
{"title":"LEIA Discovery of the Longest-lasting and Most Energetic Stellar X-Ray Flare Ever Detected","authors":"Xuan Mao, He-Yang Liu, Song Wang, Zhixing Ling, Weimin Yuan, Huaqing Cheng, Haiwu Pan, Dongyue Li, Fabio Favata, Tuo Ji, Jujia Zhang, Xinlin Zhao, Jing Wang, Mingjun Liu, Yuan Liu, Zhiming Cai, Alberto J. Castro-Tirado, Yanfeng Dai, Licai Deng, Xu Ding, Kaifan Ji, Chichuan Jin, Yajuan Lei, Huali Li, Jun Lin, Huaqiu Liu, Shuai Liu, Hui Sun, Shengli Sun, Xiaojin Sun, Jianrong Shi, Jianguo Wang, Jingxiu Wang, Wenxin Wang, Jianyan Wei, Liping Xin, Dingrong Xiong, Chen Zhang, Wenda Zhang, Yonghe Zhang, Xiaofeng Zhang, Donghua Zhao and Guiping Zhou","doi":"10.3847/1538-4357/ada698","DOIUrl":null,"url":null,"abstract":"The Lobster Eye Imager for Astronomy (LEIA) detected a new X-ray transient on 2022 November 7, identified as a superflare event occurring on a nearby K-type giant star HD 251108. The flux increase was also detected in follow-up observations at X-ray, UV, and optical wavelengths. The flare lasted for about 40 days in soft X-ray observations, reaching a peak luminosity of ∼1.1 × 1034 erg s−1 in 0.5–4.0 keV, which is roughly 60 times the quiescent luminosity. Optical brightening was observed for only one night. The X-ray light curve is well described by a double fast rise and exponential decay model, attributed to the cooling process of a loop arcade structure formed subsequent to the initial large loop with a half-length of ∼1.9 × 1012 cm. Time-resolved X-ray spectra were fitted by a four-temperature apec model (with three components being the quiescent background), showing significant evolution of plasma temperature and emission measure over time. The estimated energy released in the LEIA band is ∼3 × 1039 erg, suggesting that this is likely the most energetic X-ray stellar flare with the longest duration detected to date.","PeriodicalId":501813,"journal":{"name":"The Astrophysical Journal","volume":"12 1","pages":""},"PeriodicalIF":0.0000,"publicationDate":"2025-02-20","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"The Astrophysical Journal","FirstCategoryId":"1085","ListUrlMain":"https://doi.org/10.3847/1538-4357/ada698","RegionNum":0,"RegionCategory":null,"ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"","JCRName":"","Score":null,"Total":0}
引用次数: 0
摘要
龙虾眼天文成像仪(LEIA)于2022年11月7日探测到了一个新的X射线瞬变体,被确定为发生在附近一颗K型巨星HD 251108上的超级耀斑事件。在 X 射线、紫外线和光学波长的后续观测中也探测到了通量的增加。在软 X 射线观测中,耀斑持续了大约 40 天,在 0.5-4.0 keV 波段达到了 1.1 × 1034 erg s-1 的峰值光度,大约是静态光度的 60 倍。光学亮度只观测到一个晚上。X 射线光曲线用双快速上升和指数衰减模型进行了很好的描述,这归因于在半长 ∼1.9 × 1012 厘米的初始大环之后形成的环状弧形结构的冷却过程。时间分辨 X 射线光谱由一个四温度 apec 模型(其中三个分量为静态背景)拟合,显示出等离子体温度和发射量随时间的显著演变。据估计,LEIA波段释放的能量为3×1039尔格,这可能是迄今为止探测到的能量最大、持续时间最长的X射线恒星耀斑。
LEIA Discovery of the Longest-lasting and Most Energetic Stellar X-Ray Flare Ever Detected
The Lobster Eye Imager for Astronomy (LEIA) detected a new X-ray transient on 2022 November 7, identified as a superflare event occurring on a nearby K-type giant star HD 251108. The flux increase was also detected in follow-up observations at X-ray, UV, and optical wavelengths. The flare lasted for about 40 days in soft X-ray observations, reaching a peak luminosity of ∼1.1 × 1034 erg s−1 in 0.5–4.0 keV, which is roughly 60 times the quiescent luminosity. Optical brightening was observed for only one night. The X-ray light curve is well described by a double fast rise and exponential decay model, attributed to the cooling process of a loop arcade structure formed subsequent to the initial large loop with a half-length of ∼1.9 × 1012 cm. Time-resolved X-ray spectra were fitted by a four-temperature apec model (with three components being the quiescent background), showing significant evolution of plasma temperature and emission measure over time. The estimated energy released in the LEIA band is ∼3 × 1039 erg, suggesting that this is likely the most energetic X-ray stellar flare with the longest duration detected to date.