Impact of Secondary Acceleration in Gamma-Ray Bursts
arXiv:1403.0574 · doi:10.1051/0004-6361/201423745
Abstract
We discuss the acceleration of secondary muons, pions, and kaons in gamma-ray bursts within the internal shock scenario, and their impact on the neutrino fluxes. We introduce a two-zone model consisting of an acceleration zone (the shocks) and a radiation zone (the plasma downstream the shocks). The acceleration in the shocks, which is an unavoidable consequence of the efficient proton acceleration, requires efficient transport from the radiation back to the acceleration zone. On the other hand, stochastic acceleration in the radiation zone can enhance the secondary spectra of muons and kaons significantly if there is a sufficiently large turbulent region. Overall, it is plausible that neutrino spectra can be enhanced by up to a factor of two at the peak by stochastic acceleration, that an additional spectral peaks appears from shock acceleration of the secondary muons and pions, and that the neutrino production from kaon decays is enhanced. Depending on the GRB parameters, the general conclusions concerning the limits to the internal shock scenario obtained by recent IceCube and ANTARES analyses may be affected by up to a factor of two by secondary acceleration. Most of the changes occur at energies above 10^7 GeV, so the effects for next-generation radio-detection experiments will be more pronounced. In the future, however, if GRBs are detected as high-energy neutrino sources, the detection of one or several pronounced peaks around 10^6 GeV or higher energies could help to derive the basic properties of the magnetic field strength in the GRB.
10 pages, 5 figures, 1 table
References in corpus (9)
- Flavor Composition and Energy Spectrum of Astrophysical Neutrinos
- Neutrino Decays over Cosmological Distances and the Implications for Neutrino Telescopes
- The redshift and afterglow of the extremely energetic gamma-ray burst GRB 080916C
- Magnetic Field and Flavor Effects on the Gamma-Ray Burst Neutrino Flux
- UHECR escape mechanisms for protons and neutrons from GRBs, and the cosmic ray-neutrino connection
- High energy neutrino yields from astrophysical sources II: Magnetized sources
- Very High Energy Neutrinos Originating from Kaons in Gamma-Ray Bursts
- Modelling the variability of 1ES1218+30.4
- A two-zone approach to neutrino production in gamma-ray bursts
Cited by in corpus (10)
- Search for Prompt Neutrino Emission from Gamma-Ray Bursts with IceCube
- CRPropa 3.2 -- an advanced framework for high-energy particle propagation in extragalactic and galactic spaces
- Searches for Neutrinos from Gamma-Ray Bursts using the IceCube Neutrino Observatory
- The ultra-high-energy neutrino-nucleon cross section: measurement forecasts for an era of cosmic EeV-neutrino discovery
- Describing the Observed Cosmic Neutrinos by Interactions of Nuclei with Matter
- On the possibilities of high-energy neutrino production in the jets of microquasar SS433 in light of new observational data
- Evidence for a Spectral Break or Curvature in the Spectrum of Astrophysical Neutrinos from 5 TeV--10 PeV
- Implication of GRB 221009A: Can TeV Emission Come from the GRB Prompt Phase?
- Signatures of secondary acceleration in neutrino flares
- No Flavor Anisotropy in the High-Energy Neutrino Sky Upholds Lorentz Invariance