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ON MASS CONSTRAINTS IMPLIED BY THE RELATIVISTIC PRECESSION MODEL OF TWIN-PEAK QUASI-PERIODIC OSCILLATIONS IN CIRCINUS X-1

机译:X-1圈双峰准周期振动相对论预报模型所隐含的质量约束

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Boutloukos et al. discovered twin-peak quasi-periodic oscillations (QPOs) in 11 observations of the peculiar Z-source Circinus X-1. Among several other conjunctions the authors briefly discussed the related estimate of the compact object mass following from the geodesic relativistic precession model for kHz QPOs. Neglecting the neutron star rotation they reported the inferred mass M 0 = 2.2 ± 0.3 M ☉. We present a more detailed analysis of the estimate which involves the frame-dragging effects associated with rotating spacetimes. For a free mass we find acceptable fits of the model to data for (any) small dimensionless compact object angular momentum j = cJ/GM 2. Moreover, quality of the fit tends to increase very gently with rising j. Good fits are reached when M ~ M 0[1 + 0.55(j + j 2)]. It is therefore impossible to estimate the mass without independent knowledge of the angular momentum and vice versa. Considering j up to 0.3 the range of the feasible values of mass extends up to 3 M ☉. We suggest that similar increase of estimated mass due to rotational effects can be relevant for several other sources.
机译:Boutloukos等。在奇异的Z源Circinus X-1的11次观测中发现了双峰准周期振荡(QPO)。在其他几个结合中,作者简要讨论了根据kHz QPO的测地相对论进动模型得出的紧凑物体质量的相关估计。他们忽略了中子星的旋转,报告了推断的质量M 0 = 2.2±0.3 M☉。我们对估计进行了更详细的分析,其中涉及与旋转时空相关的帧拖曳效果。对于自由质量,我们找到了该模型对(任意)小无量纲紧致物体角动量j = cJ / GM 2的数据的拟合。当M〜M 0 [1 + 0.55(j + j 2)]时,可以达到良好的拟合度。因此,不可能在没有角动量的独立知识的情况下估计质量,反之亦然。考虑到j高达0.3,质量的可行值范围扩展到3 M☉。我们建议,由于旋转效应,估计质量的类似增加可能与其他几个来源有关。

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