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A COHERENT METHOD FOR THE DETECTION AND PARAMETER ESTIMATION OF CONTINUOUS GRAVITATIONAL WAVE SIGNALS USING A PULSAR TIMING ARRAY

机译:基于脉冲定时阵列的连续重力波信号检测与参数估计的相干方法

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The use of a high precision pulsar timing array is a promising approach to detecting gravitational waves in the very low frequency regime (10–6-10–9 Hz) that is complementary to ground-based efforts (e.g., LIGO, Virgo) at high frequencies (~10-103 Hz) and space-based ones (e.g., LISA) at low frequencies (10–4-10–1 Hz). One of the target sources for pulsar timing arrays is individual supermassive black hole binaries which are expected to form in galactic mergers. In this paper, a likelihood-based method for detection and parameter estimation is presented for a monochromatic continuous gravitational wave signal emitted by such a source. The so-called pulsar terms in the signal that arise due to the breakdown of the long-wavelength approximation are explicitly taken into account in this method. In addition, the method accounts for equality and inequality constraints involved in the semi-analytical maximization of the likelihood over a subset of the parameters. The remaining parameters are maximized over numerically using Particle Swarm Optimization. Thus, the method presented here solves the monochromatic continuous wave detection and parameter estimation problem without invoking some of the approximations that have been used in earlier studies.
机译:高精度脉冲星定时阵列的使用是一种非常有前途的方法,它可以在非常低的频率范围(10–6-10–9 Hz)中检测引力波,这是对地面努力(例如LIGO,处女座)的补充。低频(〜10-103 Hz)和天基(例如LISA)的低频(10–4-10–1 Hz)。脉冲星时序阵列的目标源之一是单个超大质量黑洞二进制文件,有望在银河合并中形成。在本文中,提出了一种基于似然的检测和参数估计方法,用于这种源发出的单色连续重力波信号。在该方法中明确考虑了由于长波长近似值的分解而产生的信号中的所谓脉冲星项。另外,该方法考虑了参数的子集上的似然性的半分析最大化中涉及的相等和不等式约束。使用粒子群优化在数值上最大化其余参数。因此,此处提出的方法解决了单色连续波检测和参数估计问题,而无需调用先前研究中已使用的一些近似方法。

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