Comparing the Sun to Sun-like stars

IF 5.4 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Konstantin Herbst, Eliana M. Amazo-Gómez, Athanasios Papaioannou
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Abstract

Context. Whether the Sun is an ordinary G-type star is still an open scientific question. Stellar surveys by Kepler and TESS, however, have revealed that Sun-like stars tend to show much stronger flare activity than the Sun.Aims. This study aims to reassess observed flare and spot activity of Sun-like Kepler stars by fine-tuning the criteria for a more robust definition of Sun-like conditions and better comparability between the current Sun and Sun-like stars.Methods. We updated one of the recent stellar Sun-like star samples by applying new empirical stellar relations between the starspot size and the effective stellar temperature to derive more reliable starspot group sizes. From the 265 solar-type stars, we found 48 stars supporting Kepler 30-minute-cadence light curves. We analyzed these 48 by implementing the gradient of the power spectra method to distinguish between spot- and faculae-dominated stars. We employed the α factor to quantify the area ratio of bright and dark features on the stellar surface.Results. We were able to determine which of the 48 stars were spot- or faculae-dominated. Our results revealed a preferential distribution of Kepler Sun-like stars toward the spot-dominated (44 stars) and transitional (4 stars) regimes. As the current Sun is faculae-dominated, only the transitional stars were utilized for further evaluation. Additionally, accounting for comparability in stellar mass, radius, and rotation period, we show that only 1 of the 265 Sun-like stars in the Kepler sample (i.e., KIC 11599385) can be directly compared to the current Sun. We further show that the single flare observed on KIC 11599385 falls right within the flare energy range estimated for the AD774/775 event observed in the cosmogenic radionuclide archives of 10Be, 14C, and 36Cl.
比较太阳和类太阳恒星
上下文。太阳是否是一颗普通的g型恒星仍然是一个悬而未决的科学问题。然而,开普勒和TESS对恒星的调查显示,类太阳恒星的耀斑活动往往比太阳强烈得多。本研究旨在通过微调标准来重新评估观测到的类太阳开普勒恒星的耀斑和黑子活动,以获得更可靠的类太阳条件定义以及当前太阳和类太阳恒星之间更好的可比性。我们更新了最近的一颗类太阳恒星样本,通过应用新的经验恒星关系在恒星黑子大小和有效恒星温度之间得出更可靠的恒星黑子群大小。在265颗太阳型恒星中,我们发现了48颗支持开普勒30分钟节奏光曲线的恒星。我们利用功率谱梯度法对这48颗恒星进行了分析,以区分斑型恒星和光斑型恒星。我们用α因子来量化恒星表面明暗特征的面积比。我们能够确定48颗恒星中哪一颗是斑点或光斑主导的。我们的结果显示,开普勒类太阳恒星的优先分布倾向于黑子主导(44颗恒星)和过渡(4颗恒星)制度。由于目前的太阳以光斑为主,因此仅利用过渡恒星进行进一步评估。此外,考虑到恒星质量、半径和旋转周期的可比性,我们发现开普勒样本中265颗类太阳恒星中只有1颗(即KIC 11599385)可以直接与当前的太阳进行比较。我们进一步表明,在KIC 11599385上观测到的单次耀斑能量正好落在10Be、14C和36Cl宇宙起源放射性核素档案中观测到的AD774/775事件的耀斑能量范围内。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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