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Автор Barak Bringoltz
Дата выпуска 2009-06-01
dc.description We study the large-N volume reduction of QCD with adjoint quarks regularized on the lattice. Specifically, we use Wilson fermions, and while our d-dimensional lattice has (d−1) infinite dimensions, the remaining direction is reduced to a point. We perform a weak-coupling one-loop calculation of the free energy as a function of the holonomy in the reduced direction, and map the regimes in the bare lattice parameter space where the holonomy averages to zero and a Z<sub>N</sub>-center symmetric configuration is the ground state. For d = 4 and N<sub>f</sub> = 1/2,1 and 2 Dirac flavors we see that the center symmetry is intact in a generous regime of the phase diagram that includes the chiral point. Thus we see that large-N volume reduction of lattice QCD with adjoint Wilson quarks works at weak coupling. Interestingly, we find that this is true even if the quark mass is quite large, and this opens a path to study the volume reduced large-N pure gauge theory. Finally, we analyze in detail the UV sensitivity of the one-loop potential and show that treating the reduced theory as a (d−1)-dimensional effective field theory requires the introduction of certain relevant operators that are a subset of those suggested by Ünsal and Yaffe to stabilize the center symmetry. This means that different regularizations of the volume-reduced theory can be compared only if one includes these terms in the action.
Формат application.pdf
Издатель Institute of Physics Publishing
Название Large-N volume reduction of lattice QCD with adjoint Wilson fermions at weak-coupling
Тип paper
DOI 10.1088/1126-6708/2009/06/091
Electronic ISSN 1029- 8479
Print ISSN 1126-6708
Журнал Journal of High Energy Physics
Том 2009
Первая страница 91
Последняя страница 091
Аффилиация Barak Bringoltz; Department of Physics, University of Washington, Seattle, WA 98195-1560, U.S.A.
Выпуск 06

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