A magnetar powering the ordinary monster GRB 130427A?
arXiv:1401.1972 · doi:10.1093/mnrasl/slu003
Abstract
We present the analysis of the extraordinarily bright Gamma-Ray Burst (GRB) 130427A under the hypothesis that the GRB central engine is an accretion-powered magnetar. In this framework, initially proposed to explain GRBs with precursor activity, the prompt emission is produced by accretion of matter onto a newly-born magnetar, and the observed power is related to the accretion rate. The emission is eventually halted if the centrifugal forces are able to pause accretion. We show that the X-ray and optical afterglow is well explained as the forward shock emission with a jet break plus a contribution from the spin-down of the magnetar. Our modelling does not require any contribution from the reverse shock, that may still influence the afterglow light curve at radio and mm frequencies, or in the optical at early times. We derive the magnetic field ( G) and the spin period ( ms) of the magnetar and obtain an independent estimate of the minimum luminosity for accretion. This minimum luminosity results well below the prompt emission luminosity of GRB 130427A, providing a strong consistency check for the scenario where the entire prompt emission is the result of continuous accretion onto the magnetar. This is in agreement with the relatively long spin period of the magnetar. GRB 130427A was a well monitored GRB showing a very standard behavior and, thus, is a well-suited benchmark to show that an accretion-powered magnetar gives a unique view of the properties of long GRBs.
5 pages, 1 figure, accepted for publication in MNRAS Letters
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- Constraints on millisecond magnetars as the engines of prompt emission in gamma-ray bursts
- A self-consistent analytical magnetar model: The luminosity of -ray burst supernovae is powered by radioactivity
- Two Predictions of supernova: GRB 130427A / SN 2013cq and GRB 180728A / SN 2018fip
- The central engine of GRB 130831A and the energy breakdown of a relativistic explosion
- Afterglows from precursors in Gamma Ray Bursts. Application to the optical afterglow of GRB 091024
- The 999th Swift gamma-ray burst: Some like it thermal
- Quark deconfinement in the proto-magnetar model of Long Gamma-Ray Bursts
- The properties of prompt emission in short GRBs with extended emission observed by {\em Fermi}/GBM
- Magnetar central engines in gamma-ray busts follow the universal relation of accreting magnetic stars
- Exploring GRBs and supernovae connection: does a superluminous hypernova population exist?