In the internal shock model of gamma ray bursts ultrahigh energy muons, pions, neutrons and kaons are likely to be produced in the interactions of shock accelerated relativistic protons with low energy photons (KeV-MeV). These particles subsequently decay to high energy neutrinos/antineutrinos and other secondaries. In the high internal magnetic fields of gamma ray bursts, the ultrahigh energy charged particles (mu(+), pi(+), K+) lose energy significantly due to synchrotron radiations before decaying into secondary high energy neutrinos and antineutrinos. The relativistic neutrons decay to high energy antineutrinos, protons and electrons. We have calculated the total neutrino flux (neutrino and antineutrino) considering the decay channels o...
Context. Long gamma-ray bursts (GRBs) are associated with the gravitational collapse of ve...
Context. Gamma-ray bursts (GRB) are the most powerful events in the universe. They are cap...
The IceCube Collaboration recently reported a stringent upper limit on the high energy neutrino flux...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Ultrahigh-energy neutrons and pions are likely to be produced in particle interactions inside cosmic...
The nature of the astrophysical sources responsible for producing the observed high energy neutrinos...
Context. The observation of charged cosmic rays with energies up to 1020 eV shows ...
It is very likely that c-ray burst (GRB) sources efficiently accelerate protons up to relativistic e...
Context. It is clear from the observation of charged cosmic rays up to energies of 1020 eV that part...
We have estimated fluxes of neutrinos and gamma-rays that are generated from decays of charged and n...
We discuss the acceleration of secondary muons, pions, and kaons in gamma-ray bursts within the inte...
The long and short gamma-ray bursts are believed to be produced due to collapse of massive stars and...
We analyze the possible origin of high-energy neutrinos coming from galactic sources. A model is pro...
Gamma-ray bursts (GRBs) are expected to provide a source of ultra high en-ergy cosmic rays, accompan...
Abstract: The detection of an astrophysical source of Ultra High Energy (& 1 PeV) neutrinos and Ultr...
Context. Long gamma-ray bursts (GRBs) are associated with the gravitational collapse of ve...
Context. Gamma-ray bursts (GRB) are the most powerful events in the universe. They are cap...
The IceCube Collaboration recently reported a stringent upper limit on the high energy neutrino flux...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Ultrahigh-energy neutrons and pions are likely to be produced in particle interactions inside cosmic...
The nature of the astrophysical sources responsible for producing the observed high energy neutrinos...
Context. The observation of charged cosmic rays with energies up to 1020 eV shows ...
It is very likely that c-ray burst (GRB) sources efficiently accelerate protons up to relativistic e...
Context. It is clear from the observation of charged cosmic rays up to energies of 1020 eV that part...
We have estimated fluxes of neutrinos and gamma-rays that are generated from decays of charged and n...
We discuss the acceleration of secondary muons, pions, and kaons in gamma-ray bursts within the inte...
The long and short gamma-ray bursts are believed to be produced due to collapse of massive stars and...
We analyze the possible origin of high-energy neutrinos coming from galactic sources. A model is pro...
Gamma-ray bursts (GRBs) are expected to provide a source of ultra high en-ergy cosmic rays, accompan...
Abstract: The detection of an astrophysical source of Ultra High Energy (& 1 PeV) neutrinos and Ultr...
Context. Long gamma-ray bursts (GRBs) are associated with the gravitational collapse of ve...
Context. Gamma-ray bursts (GRB) are the most powerful events in the universe. They are cap...
The IceCube Collaboration recently reported a stringent upper limit on the high energy neutrino flux...