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arxiv: 1602.04735 · v2 · pith:FDA3BYV4new · submitted 2016-02-15 · 🌌 astro-ph.HE · astro-ph.CO· astro-ph.SR· gr-qc· hep-ph

Electromagnetic Counterparts to Black Hole Mergers Detected by LIGO

classification 🌌 astro-ph.HE astro-ph.COastro-ph.SRgr-qchep-ph
keywords ligobinaryblackcounterpartsdetectedelectromagneticgamma-raygw150914
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Mergers of stellar-mass black holes (BHs), such as GW150914 observed by LIGO, are not expected to have electromagnetic counterparts. However, the Fermi GBM detector identified of a gamma-ray transient 0.4 s after the gravitational wave (GW) signal GW150914 with consistent sky localization. I show that the two signals might be related if the BH binary detected by LIGO originated from two clumps in a dumbbell configuration that formed when the core of a rapidly rotating massive star collapsed. In that case, the BH binary merger was followed by a gamma-ray burst (GRB) from a jet that originated in the accretion flow around the remnant BH. A future detection of a GRB afterglow could be used to determine the redshift and precise localization of the source. A population of standard GW sirens with GRB redshifts would provide a new approach for precise measurements of cosmological distances as a function of redshift.

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