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Tracking continuous gravitational waves from a neutron star at once and twice the spin frequency with a hidden Markov model

机译:使用隐藏的马尔可夫模型跟踪来自中子星的连续重力波从中子星和旋转频率的两倍

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摘要

Searches for continuous gravitational waves from rapidly spinning neutron stars normally assume that the star rotates about one of its principal axes of moment of inertia, and hence the gravitational radiation emits only at twice the spin frequency of the star, 2f_?. The superfluid interior of a star pinned to the crust along an axis nonaligned with any of its principal axes allows the star to emit gravitational waves at both f_? and 2f_?, even without free precession, a phenomenon not clearly observed in known pulsars. The dualharmonic emission mechanism motivates searches combining the two frequency components of a signal to improve signal-to-noise ratio. We describe an economical, semicoherent, dual-harmonic search method,combined with a maximum likelihood coherent matched filter, F-statistic, and improved from an existing hidden Markov model (HMM) tracking scheme to track two frequency components simultaneously. We validate the method and demonstrate its performance through Monte Carlo simulations. We find that for sources emitting gravitational waves at both f_? and 2f_?, the rate of correctly recovering synthetic signals (i.e., detection efficiency), at a given false alarm probability, can be improved by -10%-70% by tracking two frequencies simultaneously compared to tracking a single component only. For sources emitting at 2f_? only, dual-harmonic tracking only leads to minor sensitivity loss, producing ?10% lower detection efficiency than tracking a single component. In directed continuous-wave searches where f_? is unknown and hence the full frequency band is searched, the computationally efficient HMM tracking algorithm provides an option of conducting both the dual-harmonic search and the conventional single frequency tracking to obtain optimal sensitivity, with a typical run time of -103 core-hr for one year's observation.
机译:从快速旋转中子恒星搜索持续的重力波通常假设星形围绕其惯性矩的主要轴之一,因此引力辐射仅发射星的旋转频率的两倍,2F_?。沿着轴钉的星形的超流式内部沿着与其任何主要轴中的任何主轴均允许该星在两个f_中发射重力波?和2f_?,即使没有自由进攻,在已知的脉冲星中没有清楚地观察到的现象。双谐波发射机构激励了组合信号的两个频率分量以提高信噪比的搜索。我们描述了一种经济,半谐波,双谐波的搜索方法,结合了最大似然相干匹配滤波器,F统计,并从现有的隐马尔可夫模型(HMM)跟踪方案改进,以便同时跟踪两个频率分量。我们通过Monte Carlo仿真验证该方法并展示其性能。我们发现,对于在F_发出引力波的来源?和2f_?,在给定的误报概率下正确恢复合成信号(即检测效率)的速率可以通过跟踪两个频率仅与跟踪单个组件同时跟踪两个频率来提高-10%-70%。对于在2F_发出的来源?仅,双谐波跟踪仅导致轻微的灵敏度损失,检测效率低于跟踪单个组件10%。在定向的连续波搜索哪里f_?因此未知,因此搜索全频带,计算上高效的HMM跟踪算法提供了进行双谐波搜索和传统单频跟踪的选择,以获得最佳灵敏度,具有-103核心-HR的典型运行时间一年的观察。

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