论文标题

推断具有连续重力波的中子星特性

Inferring neutron star properties with continuous gravitational waves

论文作者

Lu, Neil, Wette, Karl, Scott, Susan M., Melatos, Andrew

论文摘要

从快速旋转的中子星来检测连续的重力波,这打开了检查其内部物理学的可能性。我们开发了一个框架,该框架利用未来的连续重力波检测来推断中子恒星的惯性矩,赤道椭圆度以及垂直于其旋转轴的磁性偶极矩的成分。我们假设中子恒星通过引力波和电磁辐射均失去旋转动能,并且可以测量与中子恒星的距离,但不能假设可观察到电磁脉冲是可以观察到的,或者是特定的状态中子恒星方程。我们使用Fisher信息矩阵和蒙特卡洛模拟来估计推断参数中的错误,假设具有连续引力波搜索的典型参数域一致的引力波发射中子恒星群体。经过一年的观察时间,许多中子星的推断错误主要是由于距离恒星距离的错误而受到限制。如果从无线电,X射线或伽马射线脉冲星检测到连续的重力波,或者是从具有已知距离的紧凑物体(例如超新星残留物)中检测到的连续重力波,则此处开发的技术将很有用。

Detection of continuous gravitational waves from rapidly-spinning neutron stars opens up the possibility of examining their internal physics. We develop a framework that leverages a future continuous gravitational wave detection to infer a neutron star's moment of inertia, equatorial ellipticity, and the component of the magnetic dipole moment perpendicular to its rotation axis. We assume that the neutron star loses rotational kinetic energy through both gravitational wave and electromagnetic radiation, and that the distance to the neutron star can be measured, but do not assume electromagnetic pulsations are observable or a particular neutron star equation of state. We use the Fisher information matrix and Monte Carlo simulations to estimate errors in the inferred parameters, assuming a population of gravitational-wave-emitting neutron stars consistent with the typical parameter domains of continuous gravitational wave searches. After an observation time of one year, the inferred errors for many neutron stars are limited chiefly by the error in the distance to the star. The techniques developed here will be useful if continuous gravitational waves are detected from a radio, X-ray, or gamma-ray pulsar, or else from a compact object with known distance, such as a supernova remnant.

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