Hypothesis of quark binding by condensation of gluons in hadrons

Physics – High Energy Physics – High Energy Physics - Phenomenology

Scientific paper

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7 pages, Few Body Systems style, 1 png figure, presented at LIGHTCONE 2011, 23 - 27 May, 2011, Dallas, TX

Scientific paper

Hypothesis of quark binding through condensation of gluons inside hadrons is formulated in the context of a renormalization group procedure for effective particles (RGPEP) in the light-front (LF) Hamiltonian approach to QCD. At the momentum scales of relative motion of hadronic constituents that are comparable with Lambda_QCD, the hypothetical boost-invariant constituent dynamics is identified using gauge symmetry. The resulting picture of mesons and baryons closely resembles constituent quark models with harmonic oscillator potentials, shares some features of AdS/QCD, and can be systematically studied using RGPEP in QCD.

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