1993Bulletin of the American Physical SocietyRequires access

Neutrino-nucleus quasifree neutral current reactions

H. Kim, C. J. Horowitz, D. P. Murdock

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Abstract

Differential cross sections for neutrino (and antineutrino) induced nucleon knockout are calculated for neutral-current reactions. A relativistic fermi gas model with binding energy corrections is used. The authors examine possible accuracies with which strange quark axial and vector current parameters can be extracted from both existing and (possible) future experiments. Both high (above 1 GeV) and low (near 150 MeV) neutrino energies and the knockout of neutrons and protons are considered.

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What this paper is about

Differential cross sections for neutrino (and antineutrino) induced nucleon knockout are calculated for neutral-current reactions. A relativistic fermi gas model with binding energy corrections is used. The authors examine possible accuracies with which strange quark axial and vector current parameters can be extracted from both existing and (possible) future experiments. Both high (above 1 GeV) and low (near 150 MeV) neutrino energies and the knockout of neutrons and protons are considered.

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Available abstract

Differential cross sections for neutrino (and antineutrino) induced nucleon knockout are calculated for neutral-current reactions. A relativistic fermi gas model with binding energy corrections is used. The authors examine possible accuracies with which strange quark axial and vector current parameters can be extracted from both existing and (possible) future experiments. Both high (above 1 GeV) and low (near 150 MeV) neutrino energies and the knockout of neutrons and protons are considered.

Key concepts: Physics, Neutrino, Nuclear physics, Neutral current, Nucleon, Fermi Gamma-ray Space Telescope, Current (fluid), Particle physics

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