Jet-driven and jet-less fireballs from compact binary mergers
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Giancarlo Ghirlanda | O. Salafia | G. Ghisellini | G. Ghirlanda | Gabriele Ghisellini | Om S. Salafia
[1] Tsvi Piran,et al. The cocoon emission - an electromagnetic counterpart to gravitational waves from neutron star mergers , 2017, 1705.10797.
[2] R. Wijers,et al. Practical flux prescriptions for gamma-ray burst afterglows, from early to late times , 2012, 1206.2848.
[3] R. Salvaterra,et al. Luminosity function and jet structure of Gamma-Ray Burst , 2014, 1409.1213.
[4] A. J. van der Horst,et al. GAMMA-RAY BURST AFTERGLOW BROADBAND FITTING BASED DIRECTLY ON HYDRODYNAMICS SIMULATIONS , 2011, 1110.5089.
[5] O. Salafia,et al. Structure of gamma-ray burst jets: intrinsic versus apparent properties , 2015, 1502.06608.
[6] Italy.,et al. Soft gamma-ray repeater giant flares in the BATSE short gamma-ray burst catalogue: constraints from spectroscopy , 2005, astro-ph/0504308.
[7] A. Melandri,et al. A complete sample of bright Swift short gamma-ray bursts , 2014, 1405.5131.
[8] N. M. Brown,et al. Prospects for Observing and Localizing Gravitational-Wave Transients with Advanced LIGO and Advanced Virgo , 2013, Living Reviews in Relativity.
[9] R. Blandford,et al. Fluid dynamics of relativistic blast waves , 1976 .
[10] Davide Lazzati,et al. SHORT GAMMA-RAY BURSTS FROM THE MERGER OF TWO BLACK HOLES , 2016, 1602.05140.
[11] M. Rees,et al. Unsteady outflow models for cosmological gamma-ray bursts , 1994, astro-ph/9404038.
[12] Abraham Loeb,et al. ELECTROMAGNETIC COUNTERPARTS TO BLACK HOLE MERGERS DETECTED BY LIGO , 2016, 1602.04735.
[13] Tsvi Piran,et al. Predictions for the Very Early Afterglow and the Optical Flash , 1999, astro-ph/9901338.
[14] Bernard F. Schutz,et al. Networks of gravitational wave detectors and three figures of merit , 2011, 1102.5421.
[15] William H. Lee,et al. The Properties of Short Gamma-Ray Burst Jets Triggered by Neutron Star Mergers , 2016, 1609.04828.
[16] Saclay,et al. The expected thermal precursors of gamma-ray bursts in the internal shock model , 2002, astro-ph/0207456.
[17] Bing Zhang,et al. A COMPREHENSIVE STUDY OF GAMMA-RAY BURST OPTICAL EMISSION. II. AFTERGLOW ONSET AND LATE RE-BRIGHTENING COMPONENTS , 2012, 1210.5142.
[18] S Rosswog,et al. Producing Ultrastrong Magnetic Fields in Neutron Star Mergers , 2006, Science.
[19] E. Berger. Short-Duration Gamma-Ray Bursts , 2013, 1311.2603.
[20] J. Zrake,et al. MAGNETIC ENERGY PRODUCTION BY TURBULENCE IN BINARY NEUTRON STAR MERGERS , 2013, 1303.1450.
[21] Davide Lazzati,et al. Off-axis emission of short γ-ray bursts and the detectability of electromagnetic counterparts of gravitational-wave-detected binary mergers , 2016, 1610.01157.
[22] G. Ghisellini,et al. Are GRB 980425 and GRB 031203 real outliers or twins of GRB 060218 , 2006, astro-ph/0605431.
[23] Tum,et al. NEUTRON-STAR MERGER EJECTA AS OBSTACLES TO NEUTRINO-POWERED JETS OF GAMMA-RAY BURSTS , 2015, 1510.04288.
[24] A. Melandri,et al. Gamma-ray bursts in the comoving frame , 2011, 1107.4096.
[25] G. Ghisellini,et al. Afterglow emission in gamma-ray bursts - I. Pair-enriched ambient medium and radiative blast waves , 2012, 1211.2806.
[26] Jay D. Salmonson,et al. The polarization of afterglow emission reveals γ‐ray bursts jet structure , 2004 .
[27] B. Giacomazzo,et al. PRODUCING MAGNETAR MAGNETIC FIELDS IN THE MERGER OF BINARY NEUTRON STARS , 2014, 1410.0013.
[28] M. Rees,et al. Steep Slopes and Preferred Breaks in Gamma-Ray Burst Spectra: The Role of Photospheres and Comptonization , 1999 .
[29] Matteo Cantiello,et al. Off-axis Prompt X-Ray Transients from the Cocoon of Short Gamma-Ray Bursts , 2017, 1709.01468.
[30] A. Melandri,et al. Short gamma-ray bursts at the dawn of the gravitational wave era , 2016, 1607.07875.
[31] C. Thompson,et al. The soft gamma repeaters as very strongly magnetized neutron stars - I. Radiative mechanism for outbursts , 1995 .
[32] W. Hajdas,et al. An exceptionally bright flare from SGR 1806–20 and the origins of short-duration γ-ray bursts , 2005, Nature.
[33] B. Metzger,et al. Does the Collapse of a Supramassive Neutron Star Leave a Debris Disk? , 2015, Physical review letters.
[34] Li-Xin Li,et al. Transient Events from Neutron Star Mergers , 1998 .
[35] M. Ruiz,et al. General relativistic magnetohydrodynamics simulations of prompt-collapse neutron star mergers: The absence of jets. , 2017, Physical review. D..
[36] A. Lien,et al. AN ACHROMATIC BREAK IN THE AFTERGLOW OF THE SHORT GRB 140903A: EVIDENCE FOR A NARROW JET , 2016, 1605.03573.
[37] Bernard F. Schutz,et al. Living Reviews in Relativity: Making an Electronic Journal Live , 1997 .
[38] C. Thompson. A Model of gamma-ray bursts , 1994 .
[39] Yuichiro Sekiguchi,et al. High resolution numerical relativity simulations for the merger of binary magnetized neutron stars , 2014, 1407.2660.