The Light-Front Schr\"odinger Equation and Determination of the Perturbative QCD Scale from Color Confinement
Stanley J. Brodsky, Guy F. de T\'eramond, Alexandre Deur, and Hans, G\"unter Dosch

TL;DR
This paper develops a nonperturbative light-front QCD framework incorporating confinement via a harmonic oscillator potential, linking hadron spectra to the perturbative QCD scale through holography and conformal symmetry.
Contribution
It introduces a unique harmonic oscillator potential in light-front QCD derived from conformal invariance, connecting confinement, hadron spectra, and the perturbative QCD scale.
Findings
Derived a relativistic wave equation with confinement potential
Predicted the QCD scale parameter $\Lambda_{ar{MS}}$ consistent with experimental data
Established a relation between confinement scale and perturbative QCD coupling
Abstract
The valence Fock-state wavefunctions of the light-front QCD Hamiltonian satisfy a relativistic equation of motion with an effective confining potential which systematically incorporates the effects of higher quark and gluon Fock states. If one requires that the effective action which underlies the QCD Lagrangian remains conformally invariant and extends the formalism of de Alfaro, Fubini and Furlan to light front Hamiltonian theory, the potential has a unique form of a harmonic oscillator potential, and a mass gap arises. The result is a nonperturbative relativistic light-front quantum mechanical wave equation which incorporates color confinement and other essential spectroscopic and dynamical features of hadron physics, including a massless pion for zero quark mass and linear Regge trajectories with the same slope in the radial quantum number and orbital angular momentum…
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates
