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首页> 外文期刊>Classical and Quantum Gravity: An Interantional Journal of Gravity Geometry of Field Theories Supergravity Cosmology >Improving the timing precision for inspiral signals found by interferometric gravitational wave detectors
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Improving the timing precision for inspiral signals found by interferometric gravitational wave detectors

机译:提高干涉式重力波检测器发现的吸气信号的定时精度

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摘要

As they take data and improve their sensitivities, interferometric gravitational wave detectors will eventually detect signals emitted by inspiralling compact binary systems. Determining the sky position of the source will require that the signal be recorded in several detectors. The precision of the source direction determination will be driven by that of the time-of-flight measurements between detectors, and ultimately by the timing precision at the level of each detector. The latter is limited by the noise of the detector and the use of template banks, which introduce some mismatches between the parameters of the signal and the parameters of the template used to detect it. The standard way for signal timing is based on referring to the end time of the signal. In this paper we show that this is not an optimal choice and the timing precision can be improved referring to a time when the signal crosses some reference frequency, whose optimal value depends on the detector sensitivity.
机译:随着它们获取数据并提高灵敏度,干涉重力波检测器将最终检测出鼓舞人心的紧凑型二元系统发出的信号。确定信号源的天空位置将需要将信号记录在多个探测器中。源方向确定的精度将取决于检测器之间的飞行时间测量的精度,最终取决于每个检测器级别的定时精度。后者受到检测器噪声和模板库的使用的限制,模板库的使用在信号参数和用于检测信号的模板参数之间引入了一些失配。信号定时的标准方法基于引用信号的结束时间。在本文中,我们表明这不是最佳选择,并且参考信号超过某个参考频率的时间可以提高定时精度,而参考频率的最佳值取决于检测器的灵敏度。

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