The MeerKAT Pulsar Timing Array: Maps of the gravitational-wave sky with the 4.5 year data release

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Grunthal, Kathrin, Nathan, Rowina S., Thrane, Eric, Champion, David J., Miles, Matthew T., Shannon, Ryan M., Kulkarni, Atharva D., Abbate, Federico, Buchner, Sarah, Cameron, Andrew D., Geyer, Marisa, Gitika, Pratyasha, Keith, Michael J., Kramer, Michael, Lasky, Paul D., Parthasarathy, Aditya, Reardon, Daniel J., Singha, Jaikhomba, Krishnan, Vivek Venkatraman
Format: Preprint
Veröffentlicht: 2024
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866912140536840192
author Grunthal, Kathrin
Nathan, Rowina S.
Thrane, Eric
Champion, David J.
Miles, Matthew T.
Shannon, Ryan M.
Kulkarni, Atharva D.
Abbate, Federico
Buchner, Sarah
Cameron, Andrew D.
Geyer, Marisa
Gitika, Pratyasha
Keith, Michael J.
Kramer, Michael
Lasky, Paul D.
Parthasarathy, Aditya
Reardon, Daniel J.
Singha, Jaikhomba
Krishnan, Vivek Venkatraman
author_facet Grunthal, Kathrin
Nathan, Rowina S.
Thrane, Eric
Champion, David J.
Miles, Matthew T.
Shannon, Ryan M.
Kulkarni, Atharva D.
Abbate, Federico
Buchner, Sarah
Cameron, Andrew D.
Geyer, Marisa
Gitika, Pratyasha
Keith, Michael J.
Kramer, Michael
Lasky, Paul D.
Parthasarathy, Aditya
Reardon, Daniel J.
Singha, Jaikhomba
Krishnan, Vivek Venkatraman
contents In an accompanying publication, the MeerKAT Pulsar Timing Array (MPTA) collaboration reports tentative evidence for the presence of a stochastic gravitational-wave background, following observations of similar signals from the European and Indian Pulsar Timing Arrays, NANOGrav, the Parkes Pulsar Timing Array and the Chinese Pulsar Timing Array. If such a gravitational-wave background signal originates from a population of inspiraling supermassive black-hole binaries, the signal may be anisotropically distributed on the sky. In this Letter we evaluate the anisotropy of the MPTA signal using a spherical harmonic decomposition. We discuss complications arising from the covariance between pulsar pairs and regularisation of the Fisher matrix. Applying our method to the 4.5 yr dataset, we obtain two forms of sky maps for the three most sensitive MPTA frequency bins between 7 -21 nHz. Our "clean maps'' estimate the distribution of gravitational-wave strain power with minimal assumptions. Our radiometer maps answer the question: is there a statistically significant point source? We find a noteworthy hotspot in the 7 nHz clean map with a $p$-factor of $p=0.015$ (not including trial factors). Future observations are required to determine if this hotspot is of astrophysical origin.
format Preprint
id arxiv_https___arxiv_org_abs_2412_01214
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle The MeerKAT Pulsar Timing Array: Maps of the gravitational-wave sky with the 4.5 year data release
Grunthal, Kathrin
Nathan, Rowina S.
Thrane, Eric
Champion, David J.
Miles, Matthew T.
Shannon, Ryan M.
Kulkarni, Atharva D.
Abbate, Federico
Buchner, Sarah
Cameron, Andrew D.
Geyer, Marisa
Gitika, Pratyasha
Keith, Michael J.
Kramer, Michael
Lasky, Paul D.
Parthasarathy, Aditya
Reardon, Daniel J.
Singha, Jaikhomba
Krishnan, Vivek Venkatraman
High Energy Astrophysical Phenomena
In an accompanying publication, the MeerKAT Pulsar Timing Array (MPTA) collaboration reports tentative evidence for the presence of a stochastic gravitational-wave background, following observations of similar signals from the European and Indian Pulsar Timing Arrays, NANOGrav, the Parkes Pulsar Timing Array and the Chinese Pulsar Timing Array. If such a gravitational-wave background signal originates from a population of inspiraling supermassive black-hole binaries, the signal may be anisotropically distributed on the sky. In this Letter we evaluate the anisotropy of the MPTA signal using a spherical harmonic decomposition. We discuss complications arising from the covariance between pulsar pairs and regularisation of the Fisher matrix. Applying our method to the 4.5 yr dataset, we obtain two forms of sky maps for the three most sensitive MPTA frequency bins between 7 -21 nHz. Our "clean maps'' estimate the distribution of gravitational-wave strain power with minimal assumptions. Our radiometer maps answer the question: is there a statistically significant point source? We find a noteworthy hotspot in the 7 nHz clean map with a $p$-factor of $p=0.015$ (not including trial factors). Future observations are required to determine if this hotspot is of astrophysical origin.
title The MeerKAT Pulsar Timing Array: Maps of the gravitational-wave sky with the 4.5 year data release
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2412.01214