Constraining the Binarity of Black Hole Candidates: A Proof-of-concept Study of Gaia BH1 and Gaia BH2

IF 4.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Astrophysical Journal Pub Date : 2023-11-01 DOI:10.3847/1538-4357/acf4f6
Toshinori 利憲 Hayashi 林, Yasushi 靖 Suto 須藤, Alessandro A. 虎似 Trani 三努郎
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引用次数: 1

Abstract

Abstract Nearly a hundred binary black holes (BBHs) have been discovered with gravitational-wave signals emitted at their merging events. Thus, it is quite natural to expect that significantly more abundant BBHs with wider separations remain undetected in the Universe or even in our Galaxy. We consider a possibility that star–BH binary candidates may indeed host an inner BBH instead of a single BH. We present a detailed feasibility study of constraining the binarity of the currently available two targets, Gaia BH1 and Gaia BH2. Specifically, we examine three types of radial velocity (RV) modulations of a tertiary star in star–BBH triple systems; short-term RV modulations induced by the inner BBH, long-term RV modulations induced by the nodal precession, and long-term RV modulations induced by the von Zeipel-Kozai–Lidov oscillations. Direct three-body simulations combined with approximate analytic models reveal that the Gaia BH1 system may exhibit observable signatures of the hidden inner BBH if it exists at all. The methodology that we examine here is quite generic and is expected to be readily applicable to future star–BH binary candidates in a straightforward manner.
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约束候选黑洞的二元性:Gaia BH1和Gaia BH2的概念验证研究
近100个双黑洞(BBHs)已经被发现,在它们的合并事件中发出引力波信号。因此,我们很自然地期望在宇宙中甚至在我们的银河系中仍未探测到更丰富、更宽距离的bbh。我们考虑一种可能性,即恒星-黑洞双星候选者可能确实拥有一个内部黑洞,而不是一个单一的黑洞。我们提出了一项详细的可行性研究,以限制目前可用的两个目标,盖亚BH1和盖亚BH2的二值性。具体来说,我们研究了三种类型的径向速度(RV)调制的恒星- bbh三重系统中的第三星;内BBH诱导的短期RV调制、节进动诱导的长期RV调制和von Zeipel-Kozai-Lidov振荡诱导的长期RV调制。直接三体模拟结合近似解析模型表明,如果盖亚BH1系统存在,它可能会显示出隐藏的内部BBH的可观测特征。我们在这里研究的方法是相当通用的,并且有望以一种直接的方式很容易地适用于未来的恒星-黑洞双星候选者。
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来源期刊
Astrophysical Journal
Astrophysical Journal 地学天文-天文与天体物理
CiteScore
8.40
自引率
30.60%
发文量
2854
审稿时长
1 months
期刊介绍: The Astrophysical Journal is the foremost research journal in the world devoted to recent developments, discoveries, and theories in astronomy and astrophysics.
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