{"title":"Spot and Flare Activity of Single G5 III–IV Giant HD 199178 from TESS Observations","authors":"I. S. Savanov, A. N. Tarasenkov, E. S. Dmitrienko","doi":"10.1134/S1063772924701002","DOIUrl":null,"url":null,"abstract":"<p>The aim of our paper has been to study the activity of the FK Com type star rapidly rotating G5 III–IV giant HD 199178 (V1794 Cyg) based on available photometric data from the TESS mission in five sectors. The light curves of the star characterized the variability caused by rotational modulation due to the presence of cool spots on the surface, power spectra, and phase diagrams have been studied. In the power spectrum, based on the combined data of all observation sectors, the dominant peak has corresponded to the photometric period of <span>\\(P{{ = 3.28}^{d}} \\pm {{0.12}^{d}}\\)</span>. It has been suggested that a decrease in the <span>\\(P\\)</span> value over time (over an interval of ~40 years) from 3.337<sup><i>d</i></sup> up to 3.28<sup><i>d</i></sup> may be due to the long-term evolution of the positions of the active areas (spots) on the surface of a differentially rotating star. The changes in the amplitude of the brightness variability and the shape of the phase curves of HD 199178 have been analyzed and it has been found that the fraction of the star’s surface occupied by spots varied from 7 to 12% of its surface area. The flare activity of the star has been studied. The parameters of the amplitude, duration, and energy of the flares have been determined for two flares. One of the considered flares is the strongest during the observations in five sectors (5.1 × 10<sup>35</sup> erg) and in magnitude can characterize the upper limit of the flare energies in a given state of star activity. Maps of the surface temperature inhomogeneities of the star have been constructed.</p>","PeriodicalId":55440,"journal":{"name":"Astronomy Reports","volume":"68 12","pages":"1153 - 1158"},"PeriodicalIF":1.1000,"publicationDate":"2025-03-14","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":null,"platform":"Semanticscholar","paperid":null,"PeriodicalName":"Astronomy Reports","FirstCategoryId":"101","ListUrlMain":"https://link.springer.com/article/10.1134/S1063772924701002","RegionNum":4,"RegionCategory":"物理与天体物理","ArticlePicture":[],"TitleCN":null,"AbstractTextCN":null,"PMCID":null,"EPubDate":"","PubModel":"","JCR":"Q3","JCRName":"ASTRONOMY & ASTROPHYSICS","Score":null,"Total":0}
引用次数: 0
摘要
我们这篇论文的目的是根据 TESS 任务提供的五个扇区的现有测光数据,研究快速旋转的 G5 III-IV 巨星 HD 199178(V1794 Cyg)的 FK Com 型恒星的活动情况。研究了这颗恒星的光变曲线、功率谱和相图,其特点是由于表面存在冷斑而引起的旋转调制所造成的变化。在功率谱中,根据所有观测区段的综合数据,主要峰值对应于光度周期(P{{ = 3.28}^{d}} \pm {{0.12}^{d}}/)。有人认为,随着时间的推移(间隔约 40 年),从 3.337d 到 3.28d 的 \(P\)值的降低可能是由于异速旋转恒星表面的活动区域(光斑)位置的长期演变造成的。对 HD 199178 的亮度变化幅度和相位曲线形状的变化进行了分析,发现该恒星表面被光斑占据的部分占其表面积的 7%到 12%不等。对这颗恒星的耀斑活动进行了研究。确定了两个耀斑的振幅、持续时间和能量参数。其中一个耀斑在五个扇区的观测中是最强的(5.1 × 1035 erg),从幅度上可以确定在特定恒星活动状态下耀斑能量的上限。还绘制了恒星表面温度不均匀图。
Spot and Flare Activity of Single G5 III–IV Giant HD 199178 from TESS Observations
The aim of our paper has been to study the activity of the FK Com type star rapidly rotating G5 III–IV giant HD 199178 (V1794 Cyg) based on available photometric data from the TESS mission in five sectors. The light curves of the star characterized the variability caused by rotational modulation due to the presence of cool spots on the surface, power spectra, and phase diagrams have been studied. In the power spectrum, based on the combined data of all observation sectors, the dominant peak has corresponded to the photometric period of \(P{{ = 3.28}^{d}} \pm {{0.12}^{d}}\). It has been suggested that a decrease in the \(P\) value over time (over an interval of ~40 years) from 3.337d up to 3.28d may be due to the long-term evolution of the positions of the active areas (spots) on the surface of a differentially rotating star. The changes in the amplitude of the brightness variability and the shape of the phase curves of HD 199178 have been analyzed and it has been found that the fraction of the star’s surface occupied by spots varied from 7 to 12% of its surface area. The flare activity of the star has been studied. The parameters of the amplitude, duration, and energy of the flares have been determined for two flares. One of the considered flares is the strongest during the observations in five sectors (5.1 × 1035 erg) and in magnitude can characterize the upper limit of the flare energies in a given state of star activity. Maps of the surface temperature inhomogeneities of the star have been constructed.
期刊介绍:
Astronomy Reports is an international peer reviewed journal that publishes original papers on astronomical topics, including theoretical and observational astrophysics, physics of the Sun, planetary astrophysics, radio astronomy, stellar astronomy, celestial mechanics, and astronomy methods and instrumentation.