Abstract
Previous attempts to invoke diquarks in deep inelastic scattering are based upon a specific model of the proton wave-function, involving either a pure quark-diquark structure or a superposition of three-quark and quark-diquark structures. In this paper diquarks are introduced in a general way without recourse to any wave-functions. Allowance is made both for their elastic and their inelastic scattering. It is argued that previous attempts to do this are incorrect. It is demonstrated, with complete generality, that diquarks cannot resolve the current disagreement between theory and experiment in the Gottfried sum rule. (author).
Citation Formats
Caruso, F, and Leader, E.
Diquarks in deep inelastic scattering and the Gottfried sum rule.
Brazil: N. p.,
1992.
Web.
Caruso, F, & Leader, E.
Diquarks in deep inelastic scattering and the Gottfried sum rule.
Brazil.
Caruso, F, and Leader, E.
1992.
"Diquarks in deep inelastic scattering and the Gottfried sum rule."
Brazil.
@misc{etde_10157369,
title = {Diquarks in deep inelastic scattering and the Gottfried sum rule}
author = {Caruso, F, and Leader, E}
abstractNote = {Previous attempts to invoke diquarks in deep inelastic scattering are based upon a specific model of the proton wave-function, involving either a pure quark-diquark structure or a superposition of three-quark and quark-diquark structures. In this paper diquarks are introduced in a general way without recourse to any wave-functions. Allowance is made both for their elastic and their inelastic scattering. It is argued that previous attempts to do this are incorrect. It is demonstrated, with complete generality, that diquarks cannot resolve the current disagreement between theory and experiment in the Gottfried sum rule. (author).}
place = {Brazil}
year = {1992}
month = {Dec}
}
title = {Diquarks in deep inelastic scattering and the Gottfried sum rule}
author = {Caruso, F, and Leader, E}
abstractNote = {Previous attempts to invoke diquarks in deep inelastic scattering are based upon a specific model of the proton wave-function, involving either a pure quark-diquark structure or a superposition of three-quark and quark-diquark structures. In this paper diquarks are introduced in a general way without recourse to any wave-functions. Allowance is made both for their elastic and their inelastic scattering. It is argued that previous attempts to do this are incorrect. It is demonstrated, with complete generality, that diquarks cannot resolve the current disagreement between theory and experiment in the Gottfried sum rule. (author).}
place = {Brazil}
year = {1992}
month = {Dec}
}