太阳型恒星HD 111395的活动周期

IF 0.7 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS
E. S. Dmitrienko, I. S. Savanov
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引用次数: 0

摘要

在这项研究中,我们分析了明亮的太阳型恒星HD 111395的行为,目的是进一步比较它的光球、色球和日冕活动。HD 111395被发现表现出比太阳更高的活动水平。旋转周期Prot在15.25 ~ 18.88天之间,表明地表旋转具有差异性。根据TESS存档的23区和49区数据,对这颗恒星的斑点参数和表面的斑点面积进行了估计:23区和49区分别是太阳半球(MSH)的7500亿分之一和89亿分之一。这些数值超过太阳的平均值,但与在太阳上观测到的最大值相当。从Kamogata广域调查(KWS)中,确定了活动周期为930天(2.5年),1830天(5.0年)和3800天(10.4年),而ASAS测量结果为1800天(4.9年)。所得结果与先前根据色球指标和x射线通量的长期变化建立的活动周期进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Activity Cycles of Solar-Type Star HD 111395

In this study, we analyzed the behavior of the bright solar-type star HD 111395, with the aim of further comparing its photospheric, chromospheric, and coronal activity. HD 111395 is found to exhibit a higher level of activity than the Sun. The rotation periods Prot are in the range of 15.25 to 18.88 days, indicating a differential nature of surface rotation. Based on data from Sectors 23 and 49 of the TESS archive, estimates were made of the star’s spotting parameter and spot areas on its surface: 7,500 and 8,900 millionths of the solar hemisphere (MSH) for Sectors 23 and 49, respectively. These values exceed the solar mean values but are comparable to the maximum levels observed on the Sun. From Kamogata Wide-field Survey (KWS), activity cycle periods Pcycl of 930 days (2.5 years), 1,830 days (5.0 years), and 3,800 days (10.4 years) were identified, while ASAS measurements yielded a period of 1,800 days (4.9 years). The obtained results are compared with activity cycles previously established based on chromospheric indicators and long-term variations in X-ray flux.

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来源期刊
Astrophysics
Astrophysics 地学天文-天文与天体物理
CiteScore
0.90
自引率
20.00%
发文量
32
审稿时长
6-12 weeks
期刊介绍: Astrophysics (Ap) is a peer-reviewed scientific journal which publishes research in theoretical and observational astrophysics. Founded by V.A.Ambartsumian in 1965 Astrophysics is one of the international astronomy journals. The journal covers space astrophysics, stellar and galactic evolution, solar physics, stellar and planetary atmospheres, interstellar matter. Additional subjects include chemical composition and internal structure of stars, quasars and pulsars, developments in modern cosmology and radiative transfer.
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