An X-ray and radio view of the 2022 reactivation of the magnetar SGRJ1935+2154

Fuente: arXiv
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Main Authors: Ibrahim, A. Y., Borghese, A., Zelati, F. Coti, Parent, E., Marino, A., Ould-Boukattine, O. S., Rea, N., Ascenzi, S., Pacholski, D. P., Mereghetti, S., Israel, G. L., Tiengo, A., Possenti, A., Burgay, M., Turolla, R., Zane, S., Esposito, P., Gotz, D., Campana, S., Kirsten, F., Gawronski, M. P., Hessels, J. W. T.
Format: Preprint
Published: 2024
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author Ibrahim, A. Y.
Borghese, A.
Zelati, F. Coti
Parent, E.
Marino, A.
Ould-Boukattine, O. S.
Rea, N.
Ascenzi, S.
Pacholski, D. P.
Mereghetti, S.
Israel, G. L.
Tiengo, A.
Possenti, A.
Burgay, M.
Turolla, R.
Zane, S.
Esposito, P.
Gotz, D.
Campana, S.
Kirsten, F.
Gawronski, M. P.
Hessels, J. W. T.
author_facet Ibrahim, A. Y.
Borghese, A.
Zelati, F. Coti
Parent, E.
Marino, A.
Ould-Boukattine, O. S.
Rea, N.
Ascenzi, S.
Pacholski, D. P.
Mereghetti, S.
Israel, G. L.
Tiengo, A.
Possenti, A.
Burgay, M.
Turolla, R.
Zane, S.
Esposito, P.
Gotz, D.
Campana, S.
Kirsten, F.
Gawronski, M. P.
Hessels, J. W. T.
contents Recently, the Galactic magnetar SGR J1935+2154 has garnered attention due to its emission of an extremely luminous radio burst, reminiscent of Fast Radio Bursts (FRBs). SGR J1935+2154 is one of the most active magnetars, displaying flaring events nearly every year, including outbursts as well as short and intermediate bursts. Here, we present our results on the properties of the persistent and bursting X-ray emission from SGR J1935+2154, during the initial weeks following its outburst on October 10, 2022. The source was observed with XMM-Newton and NuSTAR (quasi-)simultaneously during two epochs, separated by $\sim$5 days. The persistent emission spectrum is well described by an absorbed blackbody plus power-law model up to an energy of $\sim$25 keV. No significant changes were observed in the blackbody temperature ($kT_{\rm BB}\sim$ 0.4 keV) and emitting radius ($R_{\rm BB}\sim$ 1.9 km) between the two epochs. However, we observed a slight variation in the power-law parameters. Moreover, we detected X-ray pulsations in all the datasets and derived a spin period derivative of $\dot{P} = 5.52(5) \times 10^{-11}$ ss. This is 3.8 times larger than the value measured after the first recorded outburst in 2014. Additionally, we performed quasi-simultaneous radio observations using three 25--32-m class radio telescopes for a total of 92.5 hr to search for FRB-like radio bursts and pulsed emission. However, our analysis did not reveal any radio bursts or periodic emission.
format Preprint
id arxiv_https___arxiv_org_abs_2402_08596
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle An X-ray and radio view of the 2022 reactivation of the magnetar SGRJ1935+2154
Ibrahim, A. Y.
Borghese, A.
Zelati, F. Coti
Parent, E.
Marino, A.
Ould-Boukattine, O. S.
Rea, N.
Ascenzi, S.
Pacholski, D. P.
Mereghetti, S.
Israel, G. L.
Tiengo, A.
Possenti, A.
Burgay, M.
Turolla, R.
Zane, S.
Esposito, P.
Gotz, D.
Campana, S.
Kirsten, F.
Gawronski, M. P.
Hessels, J. W. T.
High Energy Astrophysical Phenomena
Recently, the Galactic magnetar SGR J1935+2154 has garnered attention due to its emission of an extremely luminous radio burst, reminiscent of Fast Radio Bursts (FRBs). SGR J1935+2154 is one of the most active magnetars, displaying flaring events nearly every year, including outbursts as well as short and intermediate bursts. Here, we present our results on the properties of the persistent and bursting X-ray emission from SGR J1935+2154, during the initial weeks following its outburst on October 10, 2022. The source was observed with XMM-Newton and NuSTAR (quasi-)simultaneously during two epochs, separated by $\sim$5 days. The persistent emission spectrum is well described by an absorbed blackbody plus power-law model up to an energy of $\sim$25 keV. No significant changes were observed in the blackbody temperature ($kT_{\rm BB}\sim$ 0.4 keV) and emitting radius ($R_{\rm BB}\sim$ 1.9 km) between the two epochs. However, we observed a slight variation in the power-law parameters. Moreover, we detected X-ray pulsations in all the datasets and derived a spin period derivative of $\dot{P} = 5.52(5) \times 10^{-11}$ ss. This is 3.8 times larger than the value measured after the first recorded outburst in 2014. Additionally, we performed quasi-simultaneous radio observations using three 25--32-m class radio telescopes for a total of 92.5 hr to search for FRB-like radio bursts and pulsed emission. However, our analysis did not reveal any radio bursts or periodic emission.
title An X-ray and radio view of the 2022 reactivation of the magnetar SGRJ1935+2154
topic High Energy Astrophysical Phenomena
url https://arxiv.org/abs/2402.08596