论文标题

合并阶段中子二进制的F-Modes的引力波浪学杂志学

Gravitational-wave asteroseismology with f-modes from neutron star binaries at the merger phase

论文作者

Ng, Harry Ho-Yin, Cheong, Patrick Chi-Kit, Lin, Lap-Ming, Li, Tjonnie Guang Feng

论文摘要

聚合二进制中子星的重力波信号可以通过潮汐效应到合并产物的特性和振荡频率,从信号的早期产生有关状态核分子方程的特性的重要信息。我们通过比较中子恒星的基本振荡模式($ f $ mode)的频率与重力波频率与两个中子星的合并相关的中子恒星的基本振荡模式($ f $ mode),研究了孤立的中子星和它们的合并之间的直接联系。我们使用非旋转和旋转的中子星使用非线性流体动力学代码计算了四极($ l = 2 $)$ f $ - mode振荡($ f_ {2f} $),并在连条效率上近似中近似中的非线性流体动力学代码,并获得与峰值升高相关的重力频率($ f _ imentror)($ f _ max} $ rmax} $ rmax} $ rm max} b。模拟。我们发现$ f _ {\ rm max} $和$ f_ {2f} $平均在45个相等的质量系统中,总质量和状态方程式不同,平均约为1 \%。假设重力波频率仍大约等于合并附近的轨道频率$ω$的两倍,则结果表明,潮汐共振的条件$ | m |ω= f_ {2f} $在合并附近的高精度满足,其中$ m = 2 $是Azimuthal量子量子数。此外,$ f _ {\ rm max} $与均等二进制系统的潮汐变形之间的良好普遍关系现在可以通过$ f_ {2f} $之间的类似关系与隔离中子星的潮汐变形性之间的类似关系来解释,而隔离中子星的潮汐可与中性星体的差异相关。我们的发现表明,可以将重力波信号直接与基本振荡模式和质量比联系起来。

Gravitational-wave signals from coalescing binary neutron stars can yield important information about the properties of nuclear-matter equation of state from the early part of the signal through tidal effects to the properties and oscillation frequencies of the merger product. We investigate a direct link between the properties of isolated neutron stars and their merger, by comparing the frequency of the fundamental oscillation mode ($f$-mode) of neutron stars with the gravitational-wave frequency associated with the merger of two neutron stars. We calculate the quadrupolar ($l=2$) $f$-mode oscillation ($f_{2f}$) of non-rotating and rotating neutron stars using a nonlinear hydrodynamics code in the conformally-flat approximation and obtain the gravitational-wave frequency associated with the peak amplitude ($f_{\rm max}$) of binary-neutron stars from a set of publicly available simulations. We find that $f_{\rm max}$ and $f_{2f}$ differ by about 1\%, on average, across forty-five equal-mass systems with different total mass and equations of state. Assuming that the gravitational-wave frequency is still approximately equal to twice the orbital frequency $Ω$ near the merger, the result indicates that the condition for tidal resonance $|m|Ω= f_{2f}$ is satisfied to high accuracy near the merger, where $m=2$ is the azimuthal quantum number. Moreover, the well established universal relation between $f_{\rm max}$ and the tidal deformability of equal-mass binary systems can now be explained by a similar relation between $f_{2f}$ and the tidal deformability of isolated neutron stars, which has been demonstrated to be associated with the nearly incompressible properties of neutron stars. Our findings suggest that it is possible to relate the gravitational-wave signal at the merger of a binary neutron star system directly to the fundamental oscillation modes and the mass ratio.

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