High-energy neutrino emission associated with gravitational-wave signals: effects of cocoon photons and constraints on late-time emission
arXiv:2302.04130 · doi:10.3847/1538-4357/acd004
Abstract
We investigate prospects for the detection of high-energy neutrinos produced in the prolonged jets of short gamma-ray bursts (sGRBs). The X-ray lightcurves of sGRBs show extended emission components lasting for 100-1000 seconds, which are considered to be produced by prolonged engine activity. Jets by prolonged engine activity should interact with photons in the cocoon formed by the jet propagation inside the ejecta of neutron star mergers. We calculate neutrino emission from jets by prolonged engine activity, taking account of the interaction between photons provided from the cocoon and cosmic rays accelerated in the jets. We find that IceCube-Gen2, a future neutrino telescope, with the second-generation gravitational wave detectors will probably be able to observe neutrino signals associated with gravitational waves with around 10 years of operation, regardless of the assumed value of the Lorentz factor of the jets. Neutrino observations may enable us to constrain the dissipation region of the jets. We apply this model to GRB 211211A, a peculiar long GRB whose origin may be a binary neutron-star merger. Our model predicts that IceCube is unlikely to detect any associated neutrino, but a few similar events will be able to put a meaningful constraint on the physical quantities of the prolonged engine activities.
References in corpus (33)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Multi-messenger Observations of a Binary Neutron Star Merger
- Gravitational Waves and Gamma-rays from a Binary Neutron Star Merger: GW170817 and GRB 170817A
- Origin of the heavy elements in binary neutron-star mergers from a gravitational wave event
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- Illuminating Gravitational Waves: A Concordant Picture of Photons from a Neutron Star Merger
- Modeling GW170817 based on numerical relativity and its implications
- Time-integrated Neutrino Source Searches with 10 years of IceCube Data
- Short Duration Gamma-Ray Bursts with Extended Emission from Proto-Magnetar Spin-Down
- A Kilonova Following a Long-Duration Gamma-Ray Burst at 350 Mpc
- Kilonova from post-merger ejecta as an optical and near-infrared counterpart of GW170817
- The rate, luminosity function and time delay of non-Collapsar short GRBs
- High-energy neutrinos in the context of multimessenger physics
- A nearby long gamma-ray burst from a merger of compact objects
- A long-duration gamma-ray burst with a peculiar origin
- The Pacific Ocean Neutrino Experiment
- Search for Prompt Neutrino Emission from Gamma-Ray Bursts with IceCube
- The optical afterglow of GW170817 at one year post-merger
- A magnetar-powered X-ray transient as the aftermath of a binary neutron-star merger
- High-Energy Neutrino Emission from Short Gamma-Ray Bursts: Prospects for Coincident Detection with Gravitational Waves
- A Neutron Star Binary Merger Model for GW170817/GRB170817a/SSS17a
- The All-sky Medium Energy Gamma-ray Observatory eXplorer (AMEGO-X) Mission Concept
- High Energy Neutrino Flashes from Far-Ultraviolet and X-ray Flares in Gamma-Ray Bursts
- Recent Progress on Particle Acceleration and Reconnection Physics during Magnetic Reconnectionin the Magnetically-dominated Relativistic Regime
- GeV emission from a compact binary merger
- Searches for Neutrinos from Gamma-Ray Bursts using the IceCube Neutrino Observatory
- Bimodal Long-Lasting Components in Short Gamma-Ray Bursts: Promising Electromagnetic Counterparts to Neutron Star Binary Mergers
- Long-Lasting Black-Hole Jets in Short Gamma-Ray Bursts
- Linking the rates of neutron star binaries and short gamma-ray bursts
- Cocoon breakout and escape from the ejecta of neutron star mergers
- Upscattered Cocoon Emission in Short Gamma-ray Bursts as High-energy Gamma-ray Counterparts to Gravitational Waves
- Fermi-LAT Detection of a GeV Afterglow from a Compact Stellar Merger
- Exponentially Decaying Extended Emissions Following Short Gamma-Ray Bursts with Possible Luminosity -- E-folding Time Correlation
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- Gravitational wave triggered searches for high-energy neutrinos from binary neutron star mergers: prospects for next generation detectors
- Little Red Dots as Hidden Neutrino Sources
- Gravitational Wave Memory from Accelerating Relativistic Jets in Multiple Thick Shell Scenarios
- Predicting Multiwavelength Emission Associated with X-Ray Flares and Extended Emission of Gamma-Ray Bursts