论文标题

引力非辐射记忆效应

A Gravitational non-Radiative Memory Effect

论文作者

Leandro, Hebertt, Sturani, Riccardo

论文摘要

我们使用玩具模型描述了紧凑型源并关注标量,因此,我们重新审视了记忆效应的问题,即导致测试粒子配置的净累积变化的效果,因此,非辐射性是Riemann Curvature的一部分。以一个众所周知的事实的激励,即引力辐射伴随着记忆效应,即在辐射通过后存在的测试颗粒相对分离的永久位移,我们研究了在重力场的非辐射部分中存在类似效应的存在。虽然四极杆和较高的多物经历负责重力辐射,能量,动量和角动量的振荡是由于辐射排放而经历了非振荡变化的保守电荷。我们展示了由于辐射发射引起的源重排如何产生时间依赖性标量电位,从而诱导Riemann曲率张量的标量部分的时间变化。结果,从一般而言的理由上,出现了速度记忆效应,具体取决于观察者与源距离的平方的倒数,因此几乎无法观察到,与计划的重力检测器噪声光谱密度相比,如图所示。

We revisit the issue of memory effects, i.e. effects giving rise to a net cumulative change of the configuration of test particles, using a toy model describing the emission of radiation by a compact source and focusing on the scalar, hence non-radiative, part of the Riemann curvature. Motivated by the well known fact that gravitational radiation is accompanied by a memory effect, i.e. a permanent displacement of the relative separation of test particles, present after radiation has passed, we investigate the existence of an analog effect in the non-radiative part of the gravitational field. While quadrupole and higher multipoles undergo oscillations responsible for gravitational radiation, energy, momentum and angular momentum are conserved charges undergoing non-oscillatory change due to radiation emission. We show how the source re-arrangement due to radiation emission produce time-dependent scalar potentials which induce a time variation in the scalar part of the Riemann curvature tensor. As a result, on general grounds a velocity memory effect appears, depending on the inverse of the square of the distance of the observer from the source, thus making it almost impossible to observe, as shown by comparison to the planned gravitational detector noise spectral densities.

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