Study on the magnetic field of the ultraluminous X-ray pulsar RX J0209.6-7427

Fuente: arXiv
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Main Author: Chandra, Amar Deo
Format: Preprint
Published: 2025
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author Chandra, Amar Deo
author_facet Chandra, Amar Deo
contents RX J0209.6-7427 is an ultraluminous X-ray pulsar (ULXP) having spin period of about 9.3 s. To date, no cyclotron resonance scattering features have been detected in this source, which can enable direct measurement of the magnetic field of the pulsar. We estimate the surface magnetic field of the neutron star in this source using different models and find that the inferred magnetic field lies in the range of $2.4-4 \times 10^{13}$G. We study the magnetic field and spin period evolution of the source using existing models and find that the magnetic field will decay to about $\sim 10^{9}$G assuming steady accretion and the source will become a millisecond pulsar at the end of the accretion phase of the accreting binary. Comparison between the magnetic field and the spin period of other ULXPs with those of magnetars suggests that some ULXPs may have magnetar-like strong dipolar magnetic fields. Studying the magnetic and spin period evolution of ULXPs may be helpful for understanding magnetar evolution and the millisecond pulsar formation.
format Preprint
id arxiv_https___arxiv_org_abs_2505_20248
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Study on the magnetic field of the ultraluminous X-ray pulsar RX J0209.6-7427
Chandra, Amar Deo
High Energy Astrophysical Phenomena
RX J0209.6-7427 is an ultraluminous X-ray pulsar (ULXP) having spin period of about 9.3 s. To date, no cyclotron resonance scattering features have been detected in this source, which can enable direct measurement of the magnetic field of the pulsar. We estimate the surface magnetic field of the neutron star in this source using different models and find that the inferred magnetic field lies in the range of $2.4-4 \times 10^{13}$G. We study the magnetic field and spin period evolution of the source using existing models and find that the magnetic field will decay to about $\sim 10^{9}$G assuming steady accretion and the source will become a millisecond pulsar at the end of the accretion phase of the accreting binary. Comparison between the magnetic field and the spin period of other ULXPs with those of magnetars suggests that some ULXPs may have magnetar-like strong dipolar magnetic fields. Studying the magnetic and spin period evolution of ULXPs may be helpful for understanding magnetar evolution and the millisecond pulsar formation.
title Study on the magnetic field of the ultraluminous X-ray pulsar RX J0209.6-7427
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2505.20248