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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 >An autocorrelation method to detect periodic gravitational waves from neutron stars in binary systems
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An autocorrelation method to detect periodic gravitational waves from neutron stars in binary systems

机译:一种检测二元系统中子星周期性引力波的自相关方法

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摘要

Rotating, non-axisymmetric neutron stars are expected to emit continuous gravitational waves at a nearly stable frequency. Nowadays about 2500 pulsars have been detected, thanks to their beamed electromagnetic emission, and many more of these objects should exist, whose electromagnetic beam does not include Earth and cannot be detected. The gravitational emission is not beamed, and could be accessible to gravitational observatories, even though no detection as been claimed yet. About half of the pulsars predicted to possibly emit gravitational waves in the frequency range accessible to ground-based interferometers belongs to binary systems; this is an additional complication, because the frequencies of these pulsars are Doppler-shifted due to their orbital motion, and an optimal detection strategy would require a computing power far beyond the present capabilities. We present here an approach which allows searching all-sky for such sources, over a broad range of frequencies, orbital periods and binary system eccentricities, reaching sensitivities potentially good enough to provide candidates for more sophisticated hierarchical detection methods. We test this new technique using real data taken during the first science run of Virgo, and estimating the sensitivity to a set of simulated pulsar signals.
机译:旋转的非轴对称中子星有望以接近稳定的频率发射连续的引力波。如今,由于其脉冲电磁辐射,已经探测到约2500个脉冲星,并且应该存在更多的这些物体,它们的电磁束不包括地球,并且无法被探测到。引力发射没有光束,引力天文台可以进入,即使没有要求探测到。预计可能在地基干涉仪可访问的频率范围内发射引力波的脉冲星约有一半属于二元系统;这是一个额外的复杂性,因为这些脉冲星的频率由于其轨道运动而发生多普勒频移,并且最佳的检测策略将需要远远超出当前能力的计算能力。我们在这里提出一种方法,它允许在宽范围的频率,轨道周期和二元系统离心率中全天候搜索此类源,从而达到潜在的灵敏度,足以为更复杂的分层检测方法提供候选。我们使用处女座第一次科学运行期间获取的真实数据并估计对一组模拟脉冲星信号的灵敏度来测试这项新技术。

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