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arXiv:1411.5186·v2·High Energy Physics — Lattice

Glueball masses in 2+1 dimensional SU(N) gauge theories with twisted boundary conditions

Margarita García Pérez🇪🇸 · Antonio González-Arroyo🇪🇸 · Mateusz Koren🇪🇸 · Masanori Okawa🇯🇵

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Abstract

We analyze 2+1 dimensional Yang-Mills theory regularized on a lattice with twisted boundary conditions in the spatial directions. In previous work it was shown that the observables in the non-zero electric flux sectors obey the so-called -scaling, i.e. depend only on the dimensionless variable and the angle given by the parameters of the twist ( being the length of the spatial torus and the inverse 't Hooft coupling). It is conjectured that this scaling is obeyed by all physical quantities. In this work we extend the previous analyses to the zero electric flux (glueball) sector. We study the mass of the lightest scalar glueball in two theories with different but matching and in a wide range of couplings from the perturbative small-volume regime to the non-perturbative one. We find that the results are consistent with the -scaling hypothesis.

Comments: 7 pages, contribution to the 32nd International Symposium on Lattice Field Theory, 23-28 June, 2014. Columbia University New York, NY; v2: references added, minor changes; PoS(LATTICE2014)059

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