Color Confinement, Hadron Dynamics, and Hadron Spectroscopy from Light-Front Holography and Superconformal Algebra
Stanley J. Brodsky

TL;DR
This paper develops a unified approach to hadron spectroscopy and dynamics using light-front holography and superconformal algebra, revealing new relations between mesons, baryons, and tetraquarks, and connecting the hadron mass scale to the QCD running coupling.
Contribution
It introduces a novel framework combining light-front holography and superconformal algebra to unify hadron spectra and dynamics, including supersymmetric relations and a universal Regge slope.
Findings
Derivation of a confining potential from conformal symmetry principles.
Unified Regge trajectories for mesons, baryons, and tetraquarks.
Analytic form of the nonperturbative running coupling consistent with experimental data.
Abstract
The QCD light-front Hamitonian equation derived from quantization at fixed LF time provides a causal, frame-independent, method for computing hadron spectroscopy and dynamical observables. de Alfaro, Fubini, and Furlan (dAFF) have made an important observation that a mass scale can appear in the equations of motion without affecting the conformal invariance of the action if one adds a term to the Hamiltonian proportional to the dilatation operator or the special conformal operator. If one applies the dAFF procedure to the QCD light-front Hamiltonian, it leads to a color confining potential for mesons, where is the LF radial variable conjugate to the invariant mass squared. The same result, including spin terms, is obtained using light-front holography if one modifies the AdS action by the dilaton in the fifth dimension .…
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