Tidally induced bar-like galaxies in simulated clusters

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Ewa L. Łokas
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Abstract

One of the scenarios for bar formation in galaxies involves their interaction with a more massive companion. The stellar component is then transformed from a disk into a bar-like prolate spheroid. I investigated a subsample of 77 bar-like galaxies tidally induced in the cluster environment, selected among the previously studied sample of bar-like galaxies from the IllustrisTNG simulations. I present six clear, convincing examples of bar-like galaxies formed after an interaction with a progenitor of a massive brightest cluster galaxy (BCG) and describe the properties of their bars. For the whole sample, the time of bar formation is strongly correlated with and typically slightly greater than the time of the pericenter passage. All galaxies are strongly stripped of dark matter and gas, and their rotation is similarly diminished. A larger pericenter distance typically requires a higher host mass in order to transform the galaxy, but the interactions show no preference for prograde configurations. The final strength of the bars does not correlate with the amount of tidal stripping experienced because of the variety of initial properties of the progenitors and the subsequent evolution over the next pericenter passages. In spite of difficulties in the interpretation of some cases involving mergers and multiple interactions, the results confirm in the cosmological context the reality of tidal bar formation in cluster environments previously studied using controlled simulations.
模拟星系团中潮汐诱导的棒状星系
星系中棒状结构形成的一种情况是它们与质量更大的伴星相互作用。然后恒星的组成部分从一个圆盘转变成一个棒状的长条形球体。我研究了77个在星团环境中潮汐诱导的棒状星系的子样本,这些样本是从IllustrisTNG模拟中先前研究过的棒状星系样本中选择的。我提出了六个清晰、令人信服的棒状星系的例子,这些星系是在与一个大质量最亮的星系团星系(BCG)的祖先相互作用后形成的,并描述了它们的棒状星系的性质。对于整个样品来说,棒材形成的时间与柱周中心通过的时间密切相关,通常略大于柱周中心通过的时间。所有的星系都被强烈地剥夺了暗物质和气体,它们的旋转也同样减少了。一个较大的中心距离通常需要较高的宿主质量来改变星系,但是相互作用并没有显示出对顺进结构的偏好。沙洲的最终强度与所经历的潮汐剥蚀量无关,这是由于原始沙洲的初始性质和下一个中心通道的后续演化的不同。尽管在解释一些涉及合并和多重相互作用的情况方面存在困难,但研究结果在宇宙学背景下证实了先前通过控制模拟研究的星系团环境中潮汐坝形成的真实性。
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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