论文标题
使用多普勒调制和有效点扩散函数从半继承者搜索中验证连续重力波候选者
Validating continuous gravitational-wave candidates from a semicoherent search using Doppler modulation and an effective point spread function
论文作者
论文摘要
在连续重力波搜索中进行大量候选者的追随者提出了一个挑战,尤其是在计算能力和手动仔细检查每个候选人所需的时间方面。在许多搜索配置中设计和测试安全(即最大程度地减少虚假解雇)并在计算上有效的良好后续过程非常重要。我们研究了两个随访程序或“否决”,两者都利用了天体物理信号预测的多普勒调节。特别是,我们介绍了将有效点扩散功能作为我们否决标准的一部分的概念。我们利用了基于隐藏的马尔可夫模型的完善的半继承搜索算法,以研究各种搜索配置,并通过考虑效率和安全性的整体否决性能来概括否决标准。该结果可以用作使用隐藏的马尔可夫模型算法在未来连续重力波搜索中进行后续研究的指南。该结果还定性地适用于其他半手搜索算法。
Following up large numbers of candidates in continuous gravitational wave searches presents a challenge, particularly in regard to computational power and the time required to manually scrutinize each of the candidates. It is important to design and test good follow-up procedures that are safe (i.e., minimize false dismissals) and computationally efficient across many search configurations. We investigate two follow-up procedures, or "vetoes," both of which exploit the Doppler modulation predicted in astrophysical signals. In particular, we introduce the concept of using an effective point spread function as part of our veto criteria. We take advantage of a well-established semicoherent search algorithm based on a hidden Markov model to study various search configurations and to generalize the veto criteria by considering the overall veto performance in terms of efficiency and safety. The results can serve as a guideline for follow-up studies in future continuous gravitational wave searches using a hidden Markov model algorithm. The results also apply qualitatively to other semicoherent search algorithms.