Long-term study of the 2020 magnetar-like outburst of the young pulsar PSRJ1846-0258 in Kes 75

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Main Authors: Sathyaprakash, Rajath, Rea, Nanda, Zelati, Francesco Coti, Borghese, Alice, Pilia, Maura, Trudu, Matteo, Burgay, Marta, Turolla, Roberto, Zane, Silvia, Esposito, Paolo, Mereghetti, Sandro, Campana, Sergio, Götz, Diego, Ibrahim, Abubakr, Israel, GianLuca, Possenti, Andrea, Tiengo, Andrea
Format: Preprint
Published: 2024
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_version_ 1866910664521416704
author Sathyaprakash, Rajath
Rea, Nanda
Zelati, Francesco Coti
Borghese, Alice
Pilia, Maura
Trudu, Matteo
Burgay, Marta
Turolla, Roberto
Zane, Silvia
Esposito, Paolo
Mereghetti, Sandro
Campana, Sergio
Götz, Diego
Ibrahim, Abubakr
Israel, GianLuca
Possenti, Andrea
Tiengo, Andrea
author_facet Sathyaprakash, Rajath
Rea, Nanda
Zelati, Francesco Coti
Borghese, Alice
Pilia, Maura
Trudu, Matteo
Burgay, Marta
Turolla, Roberto
Zane, Silvia
Esposito, Paolo
Mereghetti, Sandro
Campana, Sergio
Götz, Diego
Ibrahim, Abubakr
Israel, GianLuca
Possenti, Andrea
Tiengo, Andrea
contents Magnetar-like activity has been observed in a large variety of neutron stars. PSR J1846-0258 is a young 327 ms radio-quiet pulsar with a large rotational power ($\sim 8 \times 10^{36}$ erg s$^{-1}$), and resides at the center of the supernova remnant Kes 75. It is one of the rare examples of a high magnetic field pulsar showing characteristics both of magnetars and radio pulsars, and can thus provide important clues on the differences in the emission mechanisms between these two classes. In 2006, PSR J1846-0258 was detected to undergo an outburst for the first time, accompanied by a large flux increase, millisecond X-ray bursts, significant spectral changes and a large timing glitch. In the period between May-June 2020, after fourteen years of quiescent stable emission, the source underwent a second magnetar-like outburst, which was followed up with several observations by NICER, XMM-Newton, NuSTAR and Swift. In this work, we report on the long-term timing and X-ray spectral properties of the source following the 2020 outburst, and place upper limits on any source activity at radio wavelengths. We demonstrate that the pulsed flux increased by a factor $> 6$ during the outburst, followed by non-trivial variability in the spin-down rate. Our timing analysis shows that the spin frequency and its derivative are clearly affected by magnetospheric activity due to the outburst. We find hints for an oscillation in the frequency derivative with a timescale of 50-60 days, recovering later on to stable quiescence.
format Preprint
id arxiv_https___arxiv_org_abs_2401_08010
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Long-term study of the 2020 magnetar-like outburst of the young pulsar PSRJ1846-0258 in Kes 75
Sathyaprakash, Rajath
Rea, Nanda
Zelati, Francesco Coti
Borghese, Alice
Pilia, Maura
Trudu, Matteo
Burgay, Marta
Turolla, Roberto
Zane, Silvia
Esposito, Paolo
Mereghetti, Sandro
Campana, Sergio
Götz, Diego
Ibrahim, Abubakr
Israel, GianLuca
Possenti, Andrea
Tiengo, Andrea
High Energy Astrophysical Phenomena
Magnetar-like activity has been observed in a large variety of neutron stars. PSR J1846-0258 is a young 327 ms radio-quiet pulsar with a large rotational power ($\sim 8 \times 10^{36}$ erg s$^{-1}$), and resides at the center of the supernova remnant Kes 75. It is one of the rare examples of a high magnetic field pulsar showing characteristics both of magnetars and radio pulsars, and can thus provide important clues on the differences in the emission mechanisms between these two classes. In 2006, PSR J1846-0258 was detected to undergo an outburst for the first time, accompanied by a large flux increase, millisecond X-ray bursts, significant spectral changes and a large timing glitch. In the period between May-June 2020, after fourteen years of quiescent stable emission, the source underwent a second magnetar-like outburst, which was followed up with several observations by NICER, XMM-Newton, NuSTAR and Swift. In this work, we report on the long-term timing and X-ray spectral properties of the source following the 2020 outburst, and place upper limits on any source activity at radio wavelengths. We demonstrate that the pulsed flux increased by a factor $> 6$ during the outburst, followed by non-trivial variability in the spin-down rate. Our timing analysis shows that the spin frequency and its derivative are clearly affected by magnetospheric activity due to the outburst. We find hints for an oscillation in the frequency derivative with a timescale of 50-60 days, recovering later on to stable quiescence.
title Long-term study of the 2020 magnetar-like outburst of the young pulsar PSRJ1846-0258 in Kes 75
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2401.08010