arXiv · hep-ph/0105141
Nonperturbative corrections to the quark self-energy
Abstract
Nonperturbative self-energy of a bound quark is computed gauge-invariantly in the framework of background perturbation theory. The resulting Delta m^2_q is negative and is a universal function of string tension and current quark mass. The shift of hadron mass squared, M^2, due to Delta m^2_q is negative, large for light quarks, and solves the long-standing problem of Regge intercepts in relativistic quark models.
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Yu. A. Simonov. 2001-06-05. Nonperturbative corrections to the quark self-energy. https://doi.org/10.1016/s0370-2693(01)00876-0
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