English

A Self-Consistent Approach to Neutral-Current Processes in Supernova Cores

Astrophysics 2011-05-12 v2 High Energy Physics - Phenomenology

Abstract

The problem of neutral-current processes (neutrino scattering, pair emission, pair absorption, axion emission, \etc) in a nuclear medium can be separated into an expression representing the phase space of the weakly interacting probe, and a set of dynamic structure functions of the medium. For a non-relativistic medium we reduce the description to two structure functions SA(\o)S_A(\o) and SV(\o)S_V(\o) of the energy transfer, representing the axial-vector and vector interactions. SVS_V is well determined by the single-nucleon approximation while SAS_A may be dominated by multiply interacting nucleons. Unless the shape of SA(\o)S_A(\o) changes dramatically at high densities, scattering processes always dominate over pair processes for neutrino transport or the emission of right-handed states. Because the emission of right-handed neutrinos and axions is controlled by the same medium response functions, a consistent constraint on their properties from consideration of supernova cooling should use the same structure functions for both neutrino transport and exotic cooling mechanisms.

Keywords

Cite

@article{arxiv.astro-ph/9312019,
  title  = {A Self-Consistent Approach to Neutral-Current Processes in Supernova Cores},
  author = {Georg Raffelt and David Seckel},
  journal= {arXiv preprint arXiv:astro-ph/9312019},
  year   = {2011}
}

Comments

33 pages, Tex