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On the origin of a highly-dispersed coherent radio burst

2012/06/19 by E. F. Keane, B. W. Stappers, M. Kramer +1 · 1 citation
Physics and Astronomy · #astro-ph.HE #astro-ph.SR

paper · pdf · doi:10.1111/j.1745-3933.2012.01306.x

accepted for publication in MNRAS Letters, 6 pages, 1 figure

arxiv created 2012/06/19 · arxiv updated 2015/06/05

Abstract

We discuss the possible source of a highly-dispersed radio transient discovered in the Parkes Multi-beam Pulsar Survey (PMPS). The pulse has a dispersion measure of 746cm-3pc, a peak flux density of 400 mJy for the observed pulse width of 7.8 ms, and a flat spectrum across a 288-MHz band centred on 1374 MHz. The flat spectrum suggests that the pulse did not originate from a pulsar, but is consistent with radio-emitting magnetar spectra. The non-detection of subsequent bursts constrains any possible pulsar period to \gtrsim1 s, and the pulse energy distribution to being much flatter than typical giant pulse emitting pulsars. The burst is also consistent with the radio signal theorised from an annihilating mini black hole. Extrapolating the PMPS detection rate, provides a limit of ΩBH\lesssim5×10-14 on the density of these objects. We investigate the consistency of these two scenarios, plus several other possible solutions, as potential explanations to the origin of the pulse, as well as for another transient with similar properties: the Lorimer Burst.

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