High-energy neutrinos from reverse shocks in choked and successful relativistic jets
arXiv:0711.2580 · doi:10.1103/PhysRevD.77.063007
Abstract
Highly relativistic jets are a key element of current gamma-ray burst models, where the jet kinetic energy is converted to radiation energy at optically thin shocks. High-energy neutrinos are also expected, from interactions of protons accelerated in the same shocks. Here we revisit the early evolution of a relativistic jet, while the jet is still inside the star, and investigate its neutrino emission. In particular we study propagation of mildly relativistic and ultrarelativistic jets through a type Ib progenitor, and follow reverse shocks as the jets cross the star. We show that protons can be accelerated to 10^4-10^5 GeV at reverse shocks, and efficiently produce mesons. The mesons experience significant cooling, suppressing subsequent neutrino emission. We show, however, that the neutrino yield from the reverse shock is still reasonably large, especially for low-luminosity and long-duration jets, where meson cooling is less severe. We discuss implications of our results in the context of neutrinos from choked jets, which are completely shock heated and do not break out of the star. From a choked jet with isotropic equivalent energy of 10^{53} erg at 10 Mpc, we expect ~20 neutrino events at IceCube.
11 pages, 7 figures, 2 tables; accepted for publication in Physical Review D
References in corpus (11)
- Gamma-Ray Bursts: Progress, Problems & Prospects
- An optical supernova associated with the X-ray flash XRF 060218
- Revealing the Supernova--Gamma-Ray Burst Connection with TeV Neutrinos
- SN 2006aj and the nature of low-luminosity gamma-ray bursts
- KM3NeT: Towards a km3 Mediterranean Neutrino Telescope
- Neutrino Spectra from Low and High Luminosity Populations of Gamma Ray Bursts
- Collimated Jet or Expanding Outflow: Possible Origins of GRBs and X-Ray Flashes
- Temporal Profiles and Spectral Lags of XRF 060218
- Detecting neutrino-transients with optical follow-up observations
- High energy neutrinos from a slow jet model of core collapse supernovae
- Very High Energy Neutrinos Originating from Kaons in Gamma-Ray Bursts
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