Optimal Strategies for Gravitational Wave Memory Detection in Pulsar Timing Arrays

Fuente: arXiv
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Main Authors: Sun, Jerry P., Siemens, Xavier, Madison, Dustin R.
Format: Preprint
Published: 2024
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author Sun, Jerry P.
Siemens, Xavier
Madison, Dustin R.
author_facet Sun, Jerry P.
Siemens, Xavier
Madison, Dustin R.
contents In this work we derive two computationally efficient frequentist detection statistics that can be used in searches for gravitational-wave bursts with memory in pulsar timing data. By maximizing the likelihood ratio in two different ways we construct a coherent statistic and an incoherent statistic, which are analogs of the $\pazocal{F}_e$ and $\pazocal{F}_p$ statistics commonly used for continuous-wave searches in pulsar timing data. We show that both statistics are $χ^2$-distributed with varying degrees of freedom and non-centrality parameters given by the signal-to-noise (SNR) ratio of the signal present in our data. The statistics can also be used to compute the maximum likelihood estimators of amplitude parameters of a possible gravitational-wave memory signal in pulsar timing data. We find that in the low-signal regime ($\mathrm{SNR} \lesssim 5$), the estimators are inaccurate. However, in intermediate- to high-signal regimes, we show that these estimators can accurately determine the correct signal parameters.
format Preprint
id arxiv_https___arxiv_org_abs_2410_19977
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optimal Strategies for Gravitational Wave Memory Detection in Pulsar Timing Arrays
Sun, Jerry P.
Siemens, Xavier
Madison, Dustin R.
General Relativity and Quantum Cosmology
In this work we derive two computationally efficient frequentist detection statistics that can be used in searches for gravitational-wave bursts with memory in pulsar timing data. By maximizing the likelihood ratio in two different ways we construct a coherent statistic and an incoherent statistic, which are analogs of the $\pazocal{F}_e$ and $\pazocal{F}_p$ statistics commonly used for continuous-wave searches in pulsar timing data. We show that both statistics are $χ^2$-distributed with varying degrees of freedom and non-centrality parameters given by the signal-to-noise (SNR) ratio of the signal present in our data. The statistics can also be used to compute the maximum likelihood estimators of amplitude parameters of a possible gravitational-wave memory signal in pulsar timing data. We find that in the low-signal regime ($\mathrm{SNR} \lesssim 5$), the estimators are inaccurate. However, in intermediate- to high-signal regimes, we show that these estimators can accurately determine the correct signal parameters.
title Optimal Strategies for Gravitational Wave Memory Detection in Pulsar Timing Arrays
topic General Relativity and Quantum Cosmology
url https://arxiv.org/abs/2410.19977