Enhanced Cosmological GRB Rates and Implications for Cosmogenic Neutrinos
arXiv:astro-ph/0610481 · doi:10.1103/PhysRevD.75.083004
Abstract
Gamma-ray bursts, which are among the most violent events in the universe, are one of the few viable candidates to produce ultrahigh energy cosmic rays. Recently, observations have revealed that GRBs generally originate from metal-poor galaxies and do not directly trace cosmic star formation, as might have been assumed from their association with core-collapse supernovae. Several implications follow from these findings. The redshift distribution of observed GRBs is expected to peak at higher redshift (compared to cosmic star formation), which is supported by the mean redshift of the Swift GRB sample, <z>~3. If GRBs are, in fact, the source of the observed UHECR, then cosmic-ray production would evolve with redshift in a stronger fashion than has been previously suggested. This necessarily leads, through the GZK process, to an enhancement in the flux of cosmogenic neutrinos, providing a near-term approach for testing the gamma-ray burst-cosmic ray connection with ongoing and proposed UHE neutrino experiments.
9 pages, 5 figures, references and two appendices added, conclusions unchanged; accepted for publication in Phys.Rev.D
References in corpus (19)
- The Supernova -- Gamma-Ray Burst Connection
- Long gamma-ray bursts and core-collapse supernovae have different environments
- An optical supernova associated with the X-ray flash XRF 060218
- Revealing the Supernova--Gamma-Ray Burst Connection with TeV Neutrinos
- A dip in the UHECR spectrum and the transition from galactic to extragalactic cosmic rays
- The redshift distribution of SWIFT Gamma-Ray Bursts: evidence for evolution
- On the nature of nearby GRB/SN host galaxies
- The metallicity dependence of the long-duration GRB rate from host galaxy luminosities
- Guaranteed and Prospective Galactic TeV Neutrino Sources
- Significant primordial star formation at redshifts z ~ 3-4
- Ly-alpha and UV emission from high-redshift GRB hosts: To what extent do GRBs trace star formation?
- The GRB 030329 host: a blue low metallicity subluminous galaxy with intense star formation
- High Energy Neutrino Flashes from Far-Ultraviolet and X-ray Flares in Gamma-Ray Bursts
- The redshift distribution of gamma-ray bursts revisited
- Ultra-high energy cosmic rays, cascade gamma-rays, and high-energy neutrinos from gamma-ray bursts
- Very High Energy Neutrinos Originating from Kaons in Gamma-Ray Bursts
- Direct Measurement of Supernova Neutrino Emission Parameters with a Gadolinium-Enhanced Super-Kamiokande Detector
- Millimetric Properties of Gamma Ray Burst Host Galaxies
- GRB 050814 at z = 5.3 and the Redshift Distribution of Swift GRBs
Cited by in corpus (19)
- High-energy neutrinos in the context of multimessenger physics
- Observational Constraints on the Ultra-high Energy Cosmic Neutrino Flux from the Second Flight of the ANITA Experiment
- Star Formation History up to z = 7.4: Implications for Gamma-Ray Bursts and the Cosmic Metallicity Evolution
- Gamma-ray Burst Cosmology
- New Limits on the Ultra-high Energy Cosmic Neutrino Flux from the ANITA Experiment
- CRPropa 3.2 -- an advanced framework for high-energy particle propagation in extragalactic and galactic spaces
- Circumscribing Late Dark Matter Decays Model Independently
- Gamma-Ray and Neutrino Backgrounds as Probes of the High-Energy Universe: Hints of Cascades, General Constraints, and Implications for TeV Searches
- Cosmogenic neutrinos as a probe of the transition from Galactic to extragalactic cosmic rays
- Selection effects in Gamma Ray Bursts correlations: consequences on the ratio between GRB and star formation rates
- Implications of a PeV neutrino spectral cutoff in GRB models
- Neutrino Spectrum from SN 1987A and from Cosmic Supernovae
- Diffuse neutrinos from extragalactic supernova remnants: Dominating the 100 TeV IceCube flux
- Constraining models for the origin of ultra-high-energy cosmic rays with a novel combined analysis of arrival directions, spectrum, and composition data measured at the Pierre Auger Observatory
- Constraining the Emissivity of Ultrahigh Energy Cosmic Rays in the Distant Universe with the Diffuse Gamma-ray Emission
- High Energy Neutrino Emission from the Earliest Gamma-Ray Bursts
- Star-forming galaxies as the origin of IceCube neutrinos: Reconciliation with Fermi-LAT gamma rays
- Determination of Cosmological Parameters from Gamma Ray Burst Characteristics and Afterglow Correlations
- Ultra high-energy cosmic rays from beyond the Greisen-Zatsepin-Kuz'min horizon