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THE MISSING LINK: MERGING NEUTRON STARS NATURALLY PRODUCE JET-LIKE STRUCTURES AND CAN POWER SHORT GAMMA-RAY BURSTS

The Astrophysical Journal Letters · 2011 · Vol. 732(1) · pp. L6–L6
Luciano RezzollaBruno GiacomazzoLuca BaiottiJonathan GranotChryssa KouveliotouMiguel A. Aloy

Abstract

Short Gamma-Ray Bursts (SGRBs) are among the most luminous explosions in the universe, releasing in less than one second the energy emitted by our Galaxy over one year. Despite decades of observations, the nature of their "central-engine" remains unknown. Considering a binary of magnetized neutron stars and solving Einstein equations, we show that their merger results in a rapidly spinning black hole surrounded by a hot and highly magnetized torus. Lasting over 35 ms and much longer than previous simulations, our study reveals that magnetohydrodynamical instabilities amplify an initially turbulent magnetic field of ~ 10^{12} G to produce an ordered poloidal field of ~ 10^{15} G along the black-hole spin-axis, within a half-opening angle of ~ 30 deg, which may naturally launch a relativistic jet. The broad consistency of our ab-initio calculations with SGRB observations shows that the merger of magnetized neutron stars can provide the basic physical conditions for the central-engine of SGRBs.

Gamma-ray bursts and supernovaeAstrophysics and Cosmic PhenomenaPulsars and Gravitational Waves ResearchNeutron starStarsGravitational waveBinary numberGamma-ray burstBlack hole (networking)Field (mathematics)Magnetic field

Funding

  • Science and Technology Facilities Council
Citations
470
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29.22
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52
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100%
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References
Identification of two classes of gamma-ray bursts
The Astrophysical Journal · 1993 · 1,913 citations
Evolutions in 3D numerical relativity using fixed mesh refinement
Classical and Quantum Gravity · 2004 · 621 citations
Electromagnetic extraction of energy from Kerr black holes
Monthly Notices of the Royal Astronomical Society · 1977 · 4,768 citations
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