Optimising gravitational-wave sky maps for pulsar timing arrays

Fuente: arXiv
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Main Authors: Grunthal, Kathrin, Champion, David J., Thrane, Eric, Nathan, Rowina S., Kramer, Michael, Miles, Matthew T.
Format: Preprint
Published: 2026
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author Grunthal, Kathrin
Champion, David J.
Thrane, Eric
Nathan, Rowina S.
Kramer, Michael
Miles, Matthew T.
author_facet Grunthal, Kathrin
Champion, David J.
Thrane, Eric
Nathan, Rowina S.
Kramer, Michael
Miles, Matthew T.
contents Pulsar timing arrays (PTAs) have recently reported compelling evidence for the presence of a gravitational-wave background signal. Mapping the gravitational-wave background is key to understanding how it is formed, since anisotropy is a tracer for, for example, a supermassive black hole binary origin. In this work we refine the frequentist regularised gravitational-wave mapping analysis developed in our previous work (as part of the MeerKAT PTA 4.5-year data release). We derive a point-spread function describing the angular resolution of a PTA. We investigate how the point spread function changes for different PTA constellations and determine the best possible angular resolution achievable within our framework. Using simulated data, we demonstrate that previous methods do not capture the actual resolution - especially in regions of the sky with a high density of pulsars. We propose an improved scheme that accounts for a variable local resolution and test it using realistic simulations of the latest MeerKAT dataset. We demonstrate that we are able to identify a continuous gravitational wave signal in a region with good pulsar sky coverage with approximately a factor of two increase in significance compared to our previous method.
format Preprint
id arxiv_https___arxiv_org_abs_2601_13957
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Optimising gravitational-wave sky maps for pulsar timing arrays
Grunthal, Kathrin
Champion, David J.
Thrane, Eric
Nathan, Rowina S.
Kramer, Michael
Miles, Matthew T.
Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
Pulsar timing arrays (PTAs) have recently reported compelling evidence for the presence of a gravitational-wave background signal. Mapping the gravitational-wave background is key to understanding how it is formed, since anisotropy is a tracer for, for example, a supermassive black hole binary origin. In this work we refine the frequentist regularised gravitational-wave mapping analysis developed in our previous work (as part of the MeerKAT PTA 4.5-year data release). We derive a point-spread function describing the angular resolution of a PTA. We investigate how the point spread function changes for different PTA constellations and determine the best possible angular resolution achievable within our framework. Using simulated data, we demonstrate that previous methods do not capture the actual resolution - especially in regions of the sky with a high density of pulsars. We propose an improved scheme that accounts for a variable local resolution and test it using realistic simulations of the latest MeerKAT dataset. We demonstrate that we are able to identify a continuous gravitational wave signal in a region with good pulsar sky coverage with approximately a factor of two increase in significance compared to our previous method.
title Optimising gravitational-wave sky maps for pulsar timing arrays
topic Instrumentation and Methods for Astrophysics
High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2601.13957