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A precessing magnetar model for GLEAM-X J162759.5-523504.3

Published 28 Jan 2022 in astro-ph.HE | (2202.05160v1)

Abstract: We propose a precessing transient magnetar model for the recently discovered radio source GLEAM-X J162759.5-523504.3. We identify the observed period of $\sim 1$ ks as the precession period of the magnetar deformed due to its strong ($B_{\phi} \sim 10{16}$ G) toroidal field. The resulting deformation of order $10{-4}$ implies a spin period of $P_{\rm s} = 0.1$ s. Assuming a strong dipole field of $B_{\rm d} \sim 10{14}$ G we predict a period derivative of $\dot{P}_{\rm s}\sim 10{-11}$ s/s. We also predict that the precession period of the magnetar can be observed in the hard X-ray band just as the other three galactic magnetars exhibit precession.

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