首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Observing and measuring the neutron-star equation-of-state in spinning binary neutron star systems
【24h】

Observing and measuring the neutron-star equation-of-state in spinning binary neutron star systems

机译:在纺丝二元中子星系中观察和测量中子星形方程

获取原文
获取原文并翻译 | 示例
           

摘要

LIGO and Virgo recently made the first observation of a binary neutron star merger demonstrating that gravitational-wave observations offer the ability to probe how matter behaves in one of the most extreme environments in the Universe. However, the gravitational-wave signal emitted by an inspiraling binary neutron star system is only weakly dependent on the equation of state and extracting this information is challenging. Previous studies have focused mainly on binary systems where the neutron stars are spinning slowly and the main imprint of neutron star matter in the inspiral signal is due to tidal effects. For binaries with non-negligible neutron-star spin the deformation of the neutron star due to its own rotation introduces additional variations in the emitted gravitational-wave signal. Here we explore whether highly spinning binary neutron-star systems offer a better chance to measure the equation-of-state than weakly spinning binary-neutron star systems. We focus on the dominant adiabatic quadrupolar effects and consider three main questions. First, we show that equation-of-state effects can be significant in the inspiral waveforms, and that the spin-quadrupole effect dominates for rapidly rotating neutron stars. Second, we show that variations in the spin-quadrupole phasing are strongly degenerate with changes in the component masses and spins, and therefore neglecting these terms has a negligible impact on the number of observations with second generation observatories. Finally, we explore the bias in the masses and spins that would be introduced by using incorrect equation-of- state terms. Using a novel method to rapidly evaluate an approximation of the likelihood we show that assuming the incorrect equation-of-state when measuring source parameters can lead to a significant bias. We also find that the ability to measure the equation-of-state is improved when considering spinning systems.
机译:Ligo和Virgo最近首次观察二元中子星合并,证明引力波观察能力探讨了宇宙中最极端环境中的一种情况。然而,由普遍存器的二元中子星系统发出的引力波信号仅弱依赖于状态的等式,提取这些信息是具有挑战性的。以前的研究主要集中在中子恒星旋转缓慢的二元系统上,并且由于潮汐效应,中子星物的主要印记是由于潮汐效应。对于具有不可忽略的中子星旋转的二进制文件,由于其自​​身的旋转引起的中子星的变形引入了发射的重力波信号的额外变化。在这里,我们探讨高度旋转的二元中子 - 星系系统提供比弱旋转二进制中子星系的态度的更好机会。我们专注于主导的绝热性Quadrupolar效应,并考虑三个主要问题。首先,我们表明,状态效应方程可以在促进波形中显着,并且旋转 - 四极效应占快速旋转中子恒星的主导。其次,我们表明旋转 - 四极相位的变化与组分质量和旋转的变化强烈堕落,因此忽略了这些术语对第二代观察者的观察人数具有可忽略的影响。最后,我们探讨了通过使用不正确的方程式术语来引入的群众和旋转的偏差。使用一种新方法快速评估近似的近似,我们示出了在测量源参数导致显着的偏压时假设不正确的状态方程。我们还发现,在考虑纺纱系统时,提高了测量状态方程的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号