论文标题
根据天文引力波天线的原理
On the principle of Astrometric Gravitational Wave Antenna
论文作者
论文摘要
通过地面光学干涉仪直接检测重力波,已经打开了一个新的天文学窗口。然而,由于这些探测器是两个米歇尔森 - 莫利(如基线)的组合,因此与当前的空间天文学高精度相比,它们确定引力波的入射方向的敏感性非常弱。因此,我们提出了一个新的概念,用于空间中引力波天线的新概念,该概念使用近对点状的源作为自然传感器,以记录和表征由传递引力波诱导的角度分离的非常微小的变化,从而互补地与线性手臂探测器进行互补作战,并在引力波动效应方向上获得信息。实际上,提出的天文引力波可观察的基于相对论的天文标准的方法,可以通过充分利用最大的望远镜光学分辨率来实质上增强引力波信号的强度,同时,同时,可以通过监视近距离近距离的封闭式固定型的源来识别源头的方向,从而提供了一个有力的工具。此外,在差异配方中使用两种局部视线避免了与局部(太阳系)背景几何形状的高阶建模有关的问题,并且需要准确的卫星埃弗米斯和态度。
The direct detection of gravitational waves by ground-based optical interferometers has opened a new window in astronomy. Nevertheless, as these detectors are a combination of two Michelson-Morley like baselines, their sensitivity for determining the incident direction of a gravitational wave is quite weak compared to current high-precision of space astrometry. We therefore present a novel concept for a gravitational wave antenna in space that uses close pairs of point-like sources as natural sensors to record and characterize the very tiny variations in angular separations induced by a passing gravitational wave, thus operating complementarily to linear arm detectors and enabling to gain informations on the gravitational wave incoming direction. Indeed, the proposed astrometric gravitational wave observable builds on methods of relativistic astrometry that can substantially enhance the strength of gravitational wave signals by exploiting to the fullest the telescope optical resolution and, at same time, provide a powerful tool for identifying the direction to the sources that originated the gravitational wave by monitoring close pairs of stars. Furthermore, the use of two local-line-of-sights in a differential formulation avoids issues related to high order modeling of the local (Solar System) background geometry and the need for accurate satellite ephemeris and attitude.