Abstract <p>A theoretical framework for study of hidden-color components of nuclei (including the nucleon-nucleon scattering states) is developed by using methods of nuclear cluster physics. The formalism is based on a constituent quark model with the QCD motivated <InlineEquation ID="IEq3"> <EquationSource Format="TEX">\(qq\)</EquationSource> <!--BPhysMGU2570236Obukhovsky-m3--> </InlineEquation> interaction and on a novel dibaryon model of the <InlineEquation ID="IEq4"> <EquationSource Format="TEX">\(NN\)</EquationSource> <!--BPhysMGU2570236Obukhovsky-m4--> </InlineEquation> interaction. Phenomenology of the dibaryon model is used for quantitative estimations of the weight of nonnucleonic (hidden-color) components in the deuteron and of the contribution of such the components to the deuteron form factors.</p>

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The Role of the Color in the \(\boldsymbol{NN}\) Interaction and in the Structure of Nuclei

  • I. T. Obukhovsky,
  • M. N. Platonova

摘要

Abstract

A theoretical framework for study of hidden-color components of nuclei (including the nucleon-nucleon scattering states) is developed by using methods of nuclear cluster physics. The formalism is based on a constituent quark model with the QCD motivated \(qq\) interaction and on a novel dibaryon model of the \(NN\) interaction. Phenomenology of the dibaryon model is used for quantitative estimations of the weight of nonnucleonic (hidden-color) components in the deuteron and of the contribution of such the components to the deuteron form factors.