论文标题

从现象学方程式的中子星的潮汐变形的更新的普遍关系

Updated universal relations for tidal deformabilities of neutron stars from phenomenological equations of state

论文作者

Godzieba, Daniel A., Gamba, Rossella, Radice, David, Bernuzzi, Sebastiano

论文摘要

状态(EOS)不敏感关系的方程,所谓的普遍关系,中子星(NS)紧凑性,其多极潮汐可变形性系数以及二进制系统的潮汐参数之间对于打破重力波波数据分析中的脱发至关重要。在这里,我们使用与当前观察结果一致的近200万个现象学EOSS验证和重新校准了这些普遍关系。在此过程中,我们将普遍关系扩展到EOS参数空间的较大区域,最著名的是较软的EOSS和较大的紧凑型。我们显示,NSS的波形模型忽略了高于领先的潮汐变形,从$ 20 \,{\ rm hz} $累积了$ 3.5 $的Dephasing radians dephasing。我们还对GW170817数据执行了完整的贝叶斯参数估计,并比较了使用文献中的通用关系和我们在此处提出的更新的拟合所产生的NS半径约束。我们发现新拟合产生的NS半径较小约500米。该差异小于GW170817的信噪比上半径上的统计不确定性,但它明显大于对于下一代检测器的预期精度。

Equation of state (EOS) insensitive relations, so-called universal relations, between the neutron star (NS) compactness, its multipolar tidal deformability coefficients, and between the tidal parameters for binary systems are essential to break degeneracies in gravitational wave data analysis. Here, we validate and recalibrate these universal relations using a large set of almost 2 million phenomenological EOSs that are consistent with current observations. In doing so, we extend universal relations to a larger region of the EOS parameter space, most notably to softer EOSs and larger compactnesses. We show that waveform models that neglect higher-than-leading-order tidal deformations of the NSs accumulate as much as $3.5$ radians of dephasing from $20\,{\rm Hz}$ to merger. We also perform a full Bayesian parameter estimation of the GW170817 data, and we compare the NS radius constraints produced using universal relations from the literature and the updated fits we propose here. We find that the new fits yield a NS radius that is smaller by about 500 meters. This difference is less than the statistical uncertainty on the radius at the signal-to-noise-ratio of GW170817, but it is significantly larger than the precision anticipated for next-generation detectors.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源