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Waveform systematics for binary neutron star gravitational wave signals: Effects of spin, precession, and the observation of electromagnetic counterparts

机译:二元中子星引力波信号的波形系统:旋转,预流的影响和电磁对应的观察

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摘要

Extracting the properties of a binary system emitting gravitational waves relies on models describing the last stages of the compact binary coalescence. In this article, we study potential biases inherent to current tidal waveform approximants for spinning and precessing systems. We perform a Bayesian study to estimate the intrinsic parameters of highly spinning binary neutron star systems. Our analysis shows that one has to include the quadrupolar deformation of the neutron stars due to their rotation once dimensionless spins above χ ~ 0.20 are reached; otherwise, the extracted intrinsic parameters are systematically biased. We find that at the design sensitivity of Advanced LIGO and Virgo, it seems unlikely that for GW170817- like sources a clear imprint of precession will be visible in the analysis of the signal employing current waveform models. However, precession effects might be detectable for unequal-mass configurations with spins larger than χ > 0.2. We finalize our study by investigating the possible benefits of a combined gravitational-wave and electromagnetic detection. The presence of electromagnetic counterparts helps in reducing the dimensionality of the parameter space with constraints on the sky location, source distance, and inclination. However, we note that although a small improvement in the estimation of the tidal deformability parameter is seen in these cases, changes in the intrinsic parameters are overall very small.
机译:提取发射引力波的二元系统的性质依赖于描述紧凑二进制聚结的最后一级的模型。在本文中,我们研究了电流潮汐波形近似值固有的潜在偏差,用于纺纱和精确系统。我们进行贝叶斯研究以估计高纺中子中子星系的内在参数。我们的分析表明,由于达到高于χ〜0.20的无量纲旋转,因此必须包括由于其旋转而包括中子恒星的四极性变形;否则,提取的内在参数系统地偏置。我们发现,在高级利焦和处女座的设计敏感度,对于GW170817的源似乎不太可能在采用电流波形模型的信号的分析中可以看到清晰的进样版本。然而,对于具有大于≥0.2的旋转的旋转的不等质量配置,可能可检测到先进效应。我们通过调查组合的引力和电磁检测的可能益处来完成我们的研究。电磁对应物的存在有助于降低参数空间的维度,在天空位置,源距离和倾斜度上具有约束。然而,我们注意到,尽管在这些情况下可以看到潮汐变形性参数的估计的小改善,但内在参数的变化总体非常小。

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