Isotropic Detectable X-ray Counterparts to Gravitational Waves from Neutron Star Binary Mergers
arXiv:1506.02030 · doi:10.1088/2041-8205/809/1/L8
Abstract
Neutron star binary mergers are strong sources of gravitational waves (GWs). Promising electromagnetic counterparts are short gamma-ray bursts (GRBs) but the emission is highly collimated. We propose that the scattering of the long-lasting plateau emission in short GRBs by the merger ejecta produces nearly isotropic emission for s with flux erg cm s at 100 Mpc in X-ray. This is detectable by Swift XRT and wide field X-ray detectors such as ISS-Lobster, Einstein Probe, eROSITA and WF-MAXI, which are desired by the infrared and optical follow-ups to localize and measure the distance to the host galaxy. The scattered X-rays obtain linear polarization, which correlates with the jet direction, X-ray luminosity and GW polarizations. The activity of plateau emission is also a natural energy source of a macronova (or kilonova) detected in short GRB 130603B without the -process radioactivity.
5 pages, 3 figures. Accepted for publication in Astrophysical Journal Letters
References in corpus (10)
- GRB Radiative Efficiencies Derived from the Swift Data: GRBs vs. XRFs, Long vs. Short
- The Millisecond Magnetar Central Engine in short GRBs
- Jet collimation in the ejecta of double neutron star merger: new canonical picture of short gamma-ray bursts
- Multi-messenger picture of compact binary mergers
- Parameter estimation for binary neutron-star coalescences with realistic noise during the Advanced LIGO era
- The interplay of disk wind and dynamical ejecta in the aftermath of neutron star - black hole mergers
- Long-Lasting Black-Hole Jets in Short Gamma-Ray Bursts
- Energy Sources and Light Curves of Macronovae
- Dust formation in macronovae
- Synergy of short gamma ray burst and gravitational wave observations: Constraining the inclination angle of the binary and possible implications for off-axis gamma ray bursts
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