INVESTIGATION OF PRIMORDIAL BLACK HOLE BURSTS USING INTERPLANETARY NETWORK GAMMA-RAY BURSTS
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Author
Ukwatta, T. N.
Hurley, K.
MacGibbon, J. H.
Svinkin, D. S.

Aptekar, R. L.
Golenetskii, S. V.
Frederiks, D. D.
Pal'shin, V. D.
Goldsten, J.
Boynton, W.
Kozyrev, A. S.
Rau, A.
Kienlin, A. von
Zhang, X.
Connaughton, V.
Yamaoka, K.
Ohno, M.

Ohmori, N.
Feroci, M.
Frontera, F.
Guidorzi, C.
Cline, T.
Gehrels, N.
Krimm, H. A.
McTiernan, J.

Affiliation
Univ Arizona, Dept Planetary SciIssue Date
2016-07-25
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INVESTIGATION OF PRIMORDIAL BLACK HOLE BURSTS USING INTERPLANETARY NETWORK GAMMA-RAY BURSTS 2016, 826 (1):98 The Astrophysical JournalJournal
The Astrophysical JournalRights
© 2016. The American Astronomical Society. All rights reserved.Collection Information
This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.Abstract
The detection of a gamma-ray burst (GRB) in the solar neighborhood would have very important implications for GRB phenomenology. The leading theories for cosmological GRBs would not be able to explain such events. The final bursts of evaporating primordial black holes (PBHs), however, would be a natural explanation for local GRBs. We present a novel technique that can constrain the distance to GRBs using detections from widely separated, non-imaging spacecraft. This method can determine the actual distance to the burst if it is local. We applied this method to constrain distances to a sample of 36 short-duration GRBs detected by the Interplanetary Network (IPN) that show observational properties that are expected from PBH evaporations. These bursts have minimum possible distances in the 10(13)-10(18) cm (7-10(5) au) range, which are consistent with the expected PBH energetics and with a possible origin in the solar neighborhood, although none of the bursts can be unambiguously demonstrated to be local. Assuming that these bursts are real PBH events, we estimate lower limits on the PBH burst evaporation rate in the solar neighborhood.ISSN
1538-4357Version
Final published versionSponsors
NASA [NNX09AU03G, NNX10AU34G, NNX11AP96G, NNX13AP09G, NNG04GM50G, NNG06GE69G, NNX07AQ22G, NNX08AC90G, NNX08AX95G, NNX09AR28G, NNX08AN23G, NNX09AO97G, NNX12AD68G, NNX06AI36G, NNX08AB84G, NNX08AZ85G, NNX09AV61G, NNX10AR12G, NNX07AR71G, NAG5-3500]; JPL [1282043, Y503559, NNX12AE41G, NNX13AI54G, NNX15AE60G, NNX07AH52G, NAG5-13080, NAG5-7766, NAG5-9126, NAG5-10710, NNG06GI89G]; Laboratory Directed Research and Development program at the Los Alamos National Laboratory (LANL); Russian Space Agency contract and RFBR [15-02-00532, 13-02-12017-ofi-m]Additional Links
http://stacks.iop.org/0004-637X/826/i=1/a=98?key=crossref.fc9935f982f147aad1edf10420b74201ae974a485f413a2113503eed53cd6c53
10.3847/0004-637X/826/1/98