Model of quark–antiquark interaction in quantum chromodynamics on the light front
- Авторлар: Zubov R.A.1, Prokhvatilov E.V.1, Malyshev M.Y.1,2
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Мекемелер:
- St. Petersburg State University
- Petersburg Nuclear Physics Institute
- Шығарылым: Том 190, № 3 (2017)
- Беттер: 378-390
- Бөлім: Article
- URL: https://journals.rcsi.science/0040-5779/article/view/171042
- DOI: https://doi.org/10.1134/S0040577917030072
- ID: 171042
Дәйексөз келтіру
Аннотация
We formulate a model of quark–antiquark interaction related to the limit transition to the light-front Hamiltonian in quantum chromodynamics. As ultraviolet regularization, we use a lattice in the space of transverse coordinates, and we additionally introduce a longitudinal light-front coordinate cutoff and also corresponding periodic boundary conditions. We regard the zero mode with respect to this coordinate as an independent dynamical variable. The state space of the model is limited to a quark and an antiquark that interact only via the zero mode of the gluon field on the light front. In this framework, we obtain a discrete mass spectrum of bound states. This spectrum is determined by an equation that with respect to the longitudinal coordinate turns out to be analogous to the’ t Hooft equation in two-dimensional quantum chromodynamics. The equation also contains a quark–antiquark potential that ensures confinement in the transverse space.
Авторлар туралы
R. Zubov
St. Petersburg State University
Хат алмасуға жауапты Автор.
Email: roman.zubov@hep.phys.spbu.ru
Ресей, St. Petersburg
E. Prokhvatilov
St. Petersburg State University
Email: roman.zubov@hep.phys.spbu.ru
Ресей, St. Petersburg
M. Malyshev
St. Petersburg State University; Petersburg Nuclear Physics Institute
Email: roman.zubov@hep.phys.spbu.ru
Ресей, St. Petersburg; Gatchina (St. Petersburg)
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