Pulsars in Globular Clusters With the SKAO

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Main Authors: Bagchi, Manjari, Abbate, Federico, Balakrishnan, Vishnu, Bernadich, Miquel Colom i, Bhattacharyya, Bhaswati, Dutta, Arunima, Freire, Paulo C. C., Halley, Kriisa, Hessels, Jason W. T., Kumari, Sangeeta, Lorimer, Duncan R., Possenti, Andrea, Nag, Rouhin, Ransom, Scott M., Ridolfi, Alessandro, Krishnan, Vivek Venkatraman, Zhu, Weiwei, Group, The SKA Pulsar Science Working
Format: Preprint
Published: 2025
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author Bagchi, Manjari
Abbate, Federico
Balakrishnan, Vishnu
Bernadich, Miquel Colom i
Bhattacharyya, Bhaswati
Dutta, Arunima
Freire, Paulo C. C.
Halley, Kriisa
Hessels, Jason W. T.
Kumari, Sangeeta
Lorimer, Duncan R.
Possenti, Andrea
Nag, Rouhin
Ransom, Scott M.
Ridolfi, Alessandro
Krishnan, Vivek Venkatraman
Zhu, Weiwei
Group, The SKA Pulsar Science Working
author_facet Bagchi, Manjari
Abbate, Federico
Balakrishnan, Vishnu
Bernadich, Miquel Colom i
Bhattacharyya, Bhaswati
Dutta, Arunima
Freire, Paulo C. C.
Halley, Kriisa
Hessels, Jason W. T.
Kumari, Sangeeta
Lorimer, Duncan R.
Possenti, Andrea
Nag, Rouhin
Ransom, Scott M.
Ridolfi, Alessandro
Krishnan, Vivek Venkatraman
Zhu, Weiwei
Group, The SKA Pulsar Science Working
contents Because of their extreme stellar densities, globular clusters are highly efficient factories of X-ray binaries and radio pulsars: per unit of stellar mass, they contain about 1000 times more of these exotic objects. Thus far, 345 radio pulsars have been found in globular clusters. These can be used as precision probes of the structure, gas content, magnetic field, and dynamic history of their host clusters; some of them are also highly interesting in their own right because they probe exotic stellar evolution scenarios as well as the physics of dense matter, accretion, and gravity; one of them (PSR~J0514$-$4002E) might even be the first pulsar - black hole system known. Deep searches with SKA-MID and SKA-LOW will only require one to a few tied-array beams, and can be done during early commissioning of the telescope, before an all-sky pulsar survey using hundreds to thousands of tied-array beams is feasible. Even a conservative approach predicts new discoveries only with the core of SKA-MID AA*, and the full AA* and eventually AA4 is expected to increase the number of discoveries even more, leading to more than doubling the current known population. This offers a great opportunity for early SKAO pulsar science, even before all the collecting area is in place. On the other hand, a more optimistic prediction calls for a 4-5 times growth of the population, leading to a total of about 1700 pulsars to be detectable with SKA-MID AA4 configuration in all Galactic GCs visible by SKA telescopes. Thus, a dedicated search for pulsars in globular clusters will fully exploit the best possible natural laboratories to study many branches of physics and astrophysics, including properties of dense matter, stellar evolution, and the dynamical history of the Galactic globular cluster systems.
format Preprint
id arxiv_https___arxiv_org_abs_2512_16154
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Pulsars in Globular Clusters With the SKAO
Bagchi, Manjari
Abbate, Federico
Balakrishnan, Vishnu
Bernadich, Miquel Colom i
Bhattacharyya, Bhaswati
Dutta, Arunima
Freire, Paulo C. C.
Halley, Kriisa
Hessels, Jason W. T.
Kumari, Sangeeta
Lorimer, Duncan R.
Possenti, Andrea
Nag, Rouhin
Ransom, Scott M.
Ridolfi, Alessandro
Krishnan, Vivek Venkatraman
Zhu, Weiwei
Group, The SKA Pulsar Science Working
High Energy Astrophysical Phenomena
Astrophysics of Galaxies
Solar and Stellar Astrophysics
Because of their extreme stellar densities, globular clusters are highly efficient factories of X-ray binaries and radio pulsars: per unit of stellar mass, they contain about 1000 times more of these exotic objects. Thus far, 345 radio pulsars have been found in globular clusters. These can be used as precision probes of the structure, gas content, magnetic field, and dynamic history of their host clusters; some of them are also highly interesting in their own right because they probe exotic stellar evolution scenarios as well as the physics of dense matter, accretion, and gravity; one of them (PSR~J0514$-$4002E) might even be the first pulsar - black hole system known. Deep searches with SKA-MID and SKA-LOW will only require one to a few tied-array beams, and can be done during early commissioning of the telescope, before an all-sky pulsar survey using hundreds to thousands of tied-array beams is feasible. Even a conservative approach predicts new discoveries only with the core of SKA-MID AA*, and the full AA* and eventually AA4 is expected to increase the number of discoveries even more, leading to more than doubling the current known population. This offers a great opportunity for early SKAO pulsar science, even before all the collecting area is in place. On the other hand, a more optimistic prediction calls for a 4-5 times growth of the population, leading to a total of about 1700 pulsars to be detectable with SKA-MID AA4 configuration in all Galactic GCs visible by SKA telescopes. Thus, a dedicated search for pulsars in globular clusters will fully exploit the best possible natural laboratories to study many branches of physics and astrophysics, including properties of dense matter, stellar evolution, and the dynamical history of the Galactic globular cluster systems.
title Pulsars in Globular Clusters With the SKAO
topic High Energy Astrophysical Phenomena
Astrophysics of Galaxies
Solar and Stellar Astrophysics
url https://arxiv.org/abs/2512.16154