UHECR escape mechanisms for protons and neutrons from GRBs, and the cosmic ray-neutrino connection
arXiv:1301.6163 · doi:10.1088/0004-637X/768/2/186
Abstract
The paradigm that gamma-ray burst (GRB) fireballs are the sources of the ultra-high energy cosmic rays (UHECRs) is being probed by neutrino observations. Very stringent bounds can be obtained from the cosmic ray (proton)--neutrino connection, assuming that the UHECRs escape as neutrons. In this study, we identify three different regimes as a function of the fireball parameters: the standard "one neutrino per cosmic ray" case, the optically thick (to neutron escape) case, and the case where leakage of protons from the boundaries of the shells (direct escape) dominates. In the optically thick regime, photomeson production is very efficient, and more neutrinos will be emitted per cosmic ray than in the standard case, whereas in the direct escape-dominated regime, more cosmic rays than neutrinos will be emitted. We demonstrate that, for efficient proton acceleration, which is required to describe the observed UHECR spectrum, the standard case only applies to a very narrow region of the fireball parameter space. We illustrate with several observed examples that conclusions on the cosmic ray--neutrino connection will depend on the actual burst parameters. We show that the definition of the pion production efficiency currently used by the IceCube collaboration underestimates the neutrino production in the optically thick case. Finally, we point out that the direct escape component leads to a spectral break in the cosmic ray spectrum emitted from a single source. The resulting "two-component model" can be used to even more strongly pronounce the spectral features of the observed UHECR spectrum than the dip model.
19 pages, 7 figures, 1 table; accepted for publication in ApJ
References in corpus (6)
- The Internal-Collision-Induced Magnetic Reconnection and Turbulence (ICMART) Model of Gamma-Ray Bursts
- Cosmogenic Neutrinos: parameter space and detectabilty from PeV to ZeV
- Prompt GRB emission from gradual energy dissipation
- Neutrino Decays over Cosmological Distances and the Implications for Neutrino Telescopes
- The redshift and afterglow of the extremely energetic gamma-ray burst GRB 080916C
- Prompt TeV neutrinos from dissipative photospheres of gamma-ray bursts
Cited by in corpus (16)
- IceCube-Gen2: The Window to the Extreme Universe
- Photohadronic origin of -ray BL Lac emission: implications for IceCube neutrinos
- A new view on Auger data and cosmogenic neutrinos in light of different nuclear disintegration and air-shower models
- High-energy cosmic ray nuclei from tidal disruption events: Origin, survival, and implications
- Interpretation of the observed neutrino emission from three Tidal Disruption Events
- Astrophysical Neutrino Production Diagnostics with the Glashow Resonance
- Impact of Secondary Acceleration in Gamma-Ray Bursts
- Neutrino signal dependence on gamma-ray burst emission mechanism
- Invisible Neutrino Decays as Origin of TeV Gamma Rays from GRB221009A
- The role of hadronic cascades in GRB models of efficient neutrino production
- Constraints on The Hadronic Content of Gamma Ray Bursts
- TeV-PeV Neutrino Oscillation of Low-luminosity Gamma-ray Bursts
- Hadronic supercriticality as a trigger for GRB emission
- Electromagnetic Cascade Emission from Neutrino-Coincident Tidal Disruption Events
- Probing the Dark Dimension with Auger data
- An Accretion Flare Interpretation for the Ultra-High-Energy Neutrino Event KM3-230213A