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Investigating the Binarity of S0-2: Implications for Its Origins and Robustness as a Probe of the Laws of Gravity around a Supermassive Black Hole

机译:研究S0-2的二元性:对它的起源和鲁棒性的暗示,作为探测超大质量黑洞周围重力定律的方法

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The star S0-2, which orbits the supermassive black hole (SMBH) in our Galaxy with a period of 16 years, provides the strongest constraint on both the mass of the SMBH and the distance to the Galactic center. S0-2 will soon provide the first measurement of relativistic effects near a SMBH. We report the first limits on the binarity of S0-2 from radial velocity (RV) monitoring, which has implications for both understanding its origin and robustness as a probe of the central gravitational field. With 87 RV measurements, which include 12 new observations that we present, we have the requisite data set to look for RV variations from S0-2's orbital model. Using a Lomb–Scargle analysis and orbit-fitting for potential binaries, we detect no RV variation beyond S0-2's orbital motion and do not find any significant periodic signal. The lack of a binary companion does not currently distinguish different formation scenarios for S0-2. The upper limit on the mass of a companion star () still allowed by our results has a median upper limit of ?sin?i?≤?1.6 M ⊙ for periods between 1 and 150 days, the longest period to avoid tidal break-up of the binary. We also investigate the impact of the remaining allowed binary system on the measurement of the relativistic redshift at S0-2's closest approach in 2018. While binary star systems are important to consider for this experiment, we find that plausible binaries for S0-2 will not alter a 5σ detection of the relativistic redshift.
机译:S0-2恒星绕我们银河系中的超大质量黑洞(SMBH)运转了16年,对SMBH的质量和距银河系中心的距离都提供了最强的约束。 S0-2很快将提供对SMBH附近相对论效应的首次测量。我们从径向速度(RV)监测报告了S0-2的二元性的第一个极限,这对于理解其起源和作为中心引力场的探测器的鲁棒性都有影响。利用87个RV测量值,其中包括我们提出的12个新观测值,我们具有必要的数据集来寻找S0-2轨道模型的RV变化。使用Lomb-Scargle分析和潜在二进制文件的轨道拟合,我们发现S0-2的轨道运动之外没有RV变化,也没有发现任何明显的周期性信号。缺少二进制伴星目前无法区分S0-2的不同形成情况。我们的结果仍然允许对伴星()的质量上限,在1至150天之间,中值上限为“ sin?i?≤≤1.6M⊙”,这是避免潮汐破裂的最长时间的二进制。我们还在2018年以S0-2的最接近方法研究了剩余的允许的双星系统对相对论红移测量的影响。虽然双星系统对于该实验而言很重要,但我们发现S0-2的合理双星不会更改相对论红移的5σ检测。

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