Neutrino signal dependence on gamma-ray burst emission mechanism
arXiv:2102.02223 · doi:10.1088/1475-7516/2021/05/034
Abstract
Long duration gamma-ray bursts (GRBs) are among the least understood astrophysical transients powering the high-energy universe. To date, various mechanisms have been proposed to explain the observed electromagnetic GRB emission. In this work, we show that, although different jet models may be equally successful in fitting the observed electromagnetic spectral energy distributions, the neutrino production strongly depends on the adopted emission and dissipation model. To this purpose, we compute the neutrino production for a benchmark high-luminosity GRB in the internal shock model, including a dissipative photosphere as well as three emission components, in the jet model invoking internal-collision-induced magnetic reconnection and turbulence (ICMART), in the case of a magnetic jet with gradual dissipation, and in a jet with dominant proton synchrotron radiation. We find that the expected neutrino fluence can vary up to three orders of magnitude in amplitude and peak at energies ranging from to GeV. For our benchmark input parameters, none of the explored GRB models is excluded by the targeted searches carried out by the IceCube and ANTARES Collaborations. However, our work highlights the potential of high-energy neutrinos of pinpointing the underlying GRB emission mechanism and the importance of relying on different jet models for unbiased stacking searches.
48 pages, including 17 figures. Discussion on the uncertainties of the jet parameters and new figures added, conclusions unchanged. Matches version accepted for publication in JCAP
References in corpus (46)
- The Supernova -- Gamma-Ray Burst Connection
- The fate of hints: updated global analysis of three-flavor neutrino oscillations
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- IceCube-Gen2: The Window to the Extreme Universe
- Formation of Hard Power-laws in the Energetic Particle Spectra Resulting from Relativistic Magnetic Reconnection
- Neutrino-Cooled Accretion Disks around Spinning Black Hole
- Relativistic Jets Shine through Shocks or Magnetic Reconnection?
- Flavor Composition and Energy Spectrum of Astrophysical Neutrinos
- The First Swift BAT Gamma-Ray Burst Catalog
- Very high efficiency photospheric emission in long duration gamma-ray bursts
- Grand Unified Neutrino Spectrum at Earth: Sources and Spectral Components
- Prompt emission spectra from the photosphere of a GRB
- Spectral and timing properties of a dissipative GRB photosphere
- Bulk Lorentz factors of Gamma-Ray Bursts
- Black-hole jets without large-scale net magnetic flux
- Prompt Emission of High Energy Photons from Gamma Ray Bursts
- Towards a Better Understanding of the GRB Phenomenon: a New Model for GRB Prompt Emission and its effects on the New Non-Thermal L-E relation
- Detection of Low-energy Breaks in Gamma-Ray Burst Prompt Emission Spectra
- Evidence of two spectral breaks in the prompt emission of gamma ray bursts
- Particle acceleration in astrophysical jets
- Astrophysical Sources of High Energy Neutrinos in the IceCube Era
- Hyperaccreting Black Hole as Gamma-Ray Burst Central Engine. II. Temporal evolution of central engine parameters during Prompt and Afterglow Phases
- Fermi and Swift Observations of GRB 190114C: Tracing the Evolution of High-Energy Emission from Prompt to Afterglow
- Relativistic MHD simulations of collision-induced magnetic dissipation in Poynting-flux-dominated jets/outflows
- UHECR escape mechanisms for protons and neutrons from GRBs, and the cosmic ray-neutrino connection
- High energy neutrinos from a slow jet model of core collapse supernovae
- Implications of a PeV neutrino spectral cutoff in GRB models
- High efficiency photospheric emission entailed by formation of a collimation shock in gamma-ray bursts
- Prompt TeV neutrinos from dissipative photospheres of gamma-ray bursts
- Proton-synchrotron as the radiation mechanism of the prompt emission of GRBs?
- Very High Energy Neutrinos Originating from Kaons in Gamma-Ray Bursts
- Exploring the acceleration mechanisms for particle injection and power-law formation during trans-relativistic magnetic reconnection
- The Fraction of Gamma-ray Bursts with an Observed Photospheric Emission Episode
- Constraining the contribution of Gamma-Ray Bursts to the high-energy diffuse neutrino flux with 10 years of ANTARES data
- Systematic parameter space study for the UHECR origin from GRBs in models with multiple internal shocks
- Non-dissipative photospheres in GRBs: Spectral appearance in the Fermi/GBM catalogue
- High-Energy Non-Thermal and Thermal Emission from GRB141207A detected by Fermi
- The role of hadronic cascades in GRB models of efficient neutrino production
- Non-thermal Gamma-ray Emission from Delayed Pair Breakdown in a Magnetized and Photon-rich Outflow
- A marginally fast-cooling proton-synchrotron model for prompt GRBs
- GRB Spectrum from Gradual Dissipation in a Magnetized Outflow
- Hadronic supercriticality as a trigger for GRB emission
- A roadmap to hadronic supercriticalities: a comprehensive study of the parameter space for high-energy astrophysical sources
- Gamma-ray Burst Spectrum with a Time-dependent Injection Rate of High-energy Electrons
- Prompt Neutrino Emission of Gamma-Ray Bursts in the Dissipative Photospheric Scenario Revisited: Possible Contributions from Cocoons
- Deciphering the properties of the central engine in GRB collapsars
Cited by in corpus (16)
- Limits on Neutrino Emission from GRB 221009A from MeV to PeV using the IceCube Neutrino Observatory
- Neutrinos from the Brightest Gamma-Ray Burst?
- Model constraints based on the IceCube neutrino non-detection of GRB 221009A
- Is the high-energy neutrino event IceCube-200530A associated with a hydrogen-rich superluminous supernova?
- Multi-collision internal shock lepto-hadronic models for energetic GRBs
- State-of-the-Art Collapsar Jet Simulations Imply Undetectable Subphotospheric Neutrinos
- Neutrinos from explosive transients at the dawn of multi-messenger astronomy
- Near-future discovery of point sources of ultra-high-energy neutrinos
- Bump-hunting in the diffuse flux of high-energy cosmic neutrinos
- Neutrino Emission from Luminous Fast Blue Optical Transients
- Neutrino search from γ-ray bursts during the prompt and X-ray afterglow phases using 10 years of IceCube public data
- Bethe-Heitler signature in proton synchrotron models for gamma-ray bursts
- Multi-messenger detection prospects of gamma-ray burst afterglows with optical jumps
- Two-detector flavor sensitivity to ultra-high-energy cosmic neutrinos
- On the 'Loose' Constraint from IceCube Neutrino Non-Detection of GRB 230307A
- Hadronic supercriticality in spherically expanding sources: application to GRB prompt emission