关于疏散星团的相遇率

IF 0.7 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
A. D. Grinenko, D. A. Kovaleva
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引用次数: 0

摘要

在过去和未来,已知特征超过6400万年的疏散星团可能会发生近距离接触,这是通过使用星系包将星团中心的轨道整合到银河系势中来计算的。已经证明,在太阳附近的银河系中,在与太阳大小相当或小于太阳大小的距离上发生的成对星团相遇的特征率为每1迈r 35-40次。具有显著年龄差异的开放群集之间的近距离接触发生率为每个最高当量15次。可以预期,在整个银河系中,这样的事件在单位时间内发生的频率要高出一个数量级。因此,不同年龄的恒星群之间的动态相互作用可能不会太罕见,并可能影响恒星群的性质。一对年龄相似的星团:HSC 1428和格列佛22被确定为一个可能的物理束缚的二元星团系统。已经为490对星团提供了未来32年的预期近距离接触预报。目前,29对星团正处于最接近的位置。这篇论文部分基于2024年现代恒星天文学会议上发表的一份报告。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

On the Encounter Rate of Open Star Clusters

On the Encounter Rate of Open Star Clusters

Probable past and future close encounters of open clusters with known characteristics over 64 m-illion years have been calculated by integrating the orbits of cluster centers in the Galactic potential using the galpy package. It has been shown that in the Galactic neighborhood of the Sun, pairwise cluster encounters at distances comparable to or smaller than their sizes occur at a characteristic rate of 35–40 events per 1 Myr. Close encounters between open clusters with a significant age difference occur at a rate of 15 events per Myr. It can be expected that in the Galaxy as a whole, such events occur an order of magnitude more frequently per unit time. Thus, dynamical interactions between stellar ensembles of different ages may not be too rare and could influence the properties of stellar populations. A pair of clusters with similar ages: HSC 1428 and Gulliver 22 was identified as a likely physically bound binary cluster system. A forecast of expected close encounters over the next 32 Myr has been provided for 490 pairs of clusters. Currently, 29 pairs of clusters are at their closest approach. The paper has been partially based on a report presented at the Modern Stellar Astronomy 2024 conference.

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来源期刊
Astronomy Reports
Astronomy Reports 地学天文-天文与天体物理
CiteScore
1.40
自引率
20.00%
发文量
57
审稿时长
6-12 weeks
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.
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