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Neutrino interactions - an experimental survey

Abstract

Current studies on neutrino interactions are surveyed and important results are summarised. The charged current studies have been refined to understand the nucleonic structure. Together with e-d and ..mu..-p deep inelastic scattering data, these studies establish a scale breaking in these scatterings. This breaking has been attributed to the 1st order correction of QCD and the quantitative checks seem to agree with the theory rather well. Data from a diverging set of experiments have been used to study the coupling constant in neutral current interaction. The coupling constants agree reasonably well with the SU(2)xU(1) model due to Weinberg and Salam. Parity violating effect in e-d scattering has been experimentally demonstrated. There is some evidence of ..mu..-e universality in neutral current interaction. The hadronic distribution has been studied in the frame work of Quark Parton model. The fragmentation functions seem to agree fairly well with the theoritical expectation. However one finds the effect of first order QCD corrections to be important in the transverse momentum distributions. Experimental data are presented in tables.
Authors:
Publication Date:
Jul 01, 1980
Product Type:
Conference
Report Number:
CONF-781260-
Reference Number:
AIX-12-598141; ERA-07-016465; EDB-82-034547
Resource Relation:
Conference: 4. high energy physics symposium, Jaipur, Rajasthan, India, 5 Dec 1978; Related Information: In: Proceedings of the fourth high energy physics symposium (held at) Jaipur, December 5-9, 1978.
Subject:
72 PHYSICS OF ELEMENTARY PARTICLES AND FIELDS; NEUTRINO-MUON INTERACTIONS; CHARGED-CURRENT INTERACTIONS; NEUTRINO-NUCLEON INTERACTIONS; CHARM PARTICLES; COUPLING CONSTANTS; EXCLUSIVE INTERACTIONS; INCLUSIVE INTERACTIONS; NEUTRAL-CURRENT INTERACTIONS; PARTICLE PRODUCTION; PARTON MODEL; REVIEWS; STRUCTURE FUNCTIONS; TOTAL CROSS SECTIONS; COMPOSITE MODELS; CROSS SECTIONS; DOCUMENT TYPES; ELEMENTARY PARTICLES; FUNCTIONS; INTERACTIONS; LEPTON-BARYON INTERACTIONS; LEPTON-HADRON INTERACTIONS; LEPTON-LEPTON INTERACTIONS; LEPTON-NUCLEON INTERACTIONS; MATHEMATICAL MODELS; PARTICLE INTERACTIONS; PARTICLE MODELS; POSTULATED PARTICLES; 645203* - High Energy Physics- Particle Interactions & Properties-Theoretical- Weak Interactions & Properties
OSTI ID:
8458182
Research Organizations:
Tata Inst. of Fundamental Research, Bombay (India)
Country of Origin:
India
Language:
English
Submitting Site:
INIS
Size:
Pages: 70-131
Announcement Date:
Apr 01, 1981

Citation Formats

Banerjee, S. Neutrino interactions - an experimental survey. India: N. p., 1980. Web.
Banerjee, S. Neutrino interactions - an experimental survey. India.
Banerjee, S. 1980. "Neutrino interactions - an experimental survey." India.
@misc{etde_8458182,
title = {Neutrino interactions - an experimental survey}
author = {Banerjee, S.}
abstractNote = {Current studies on neutrino interactions are surveyed and important results are summarised. The charged current studies have been refined to understand the nucleonic structure. Together with e-d and ..mu..-p deep inelastic scattering data, these studies establish a scale breaking in these scatterings. This breaking has been attributed to the 1st order correction of QCD and the quantitative checks seem to agree with the theory rather well. Data from a diverging set of experiments have been used to study the coupling constant in neutral current interaction. The coupling constants agree reasonably well with the SU(2)xU(1) model due to Weinberg and Salam. Parity violating effect in e-d scattering has been experimentally demonstrated. There is some evidence of ..mu..-e universality in neutral current interaction. The hadronic distribution has been studied in the frame work of Quark Parton model. The fragmentation functions seem to agree fairly well with the theoritical expectation. However one finds the effect of first order QCD corrections to be important in the transverse momentum distributions. Experimental data are presented in tables.}
place = {India}
year = {1980}
month = {Jul}
}