Renormalization and mixing of the Gluino-Glue operator on the lattice

Abstract We study the mixing of the Gluino-Glue operator in $$\mathcal{N}=1$$ N = 1 Supersymmetric Yang–Mills theory (SYM), both in dimensional regularization and on the lattice. We calculate its renormalization, which is not merely multiplicative, due to the fact that this operator can mix with non...

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Main Authors: M. Costa, H. Herodotou, P. Philippides, H. Panagopoulos
Format: Article
Language:English
Published: SpringerOpen 2021-05-01
Series:European Physical Journal C: Particles and Fields
Online Access:https://doi.org/10.1140/epjc/s10052-021-09173-x
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spelling doaj-519ff41a25f641bc9d09fdc6676b9f662021-05-09T11:41:57ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522021-05-0181511510.1140/epjc/s10052-021-09173-xRenormalization and mixing of the Gluino-Glue operator on the latticeM. Costa0H. Herodotou1P. Philippides2H. Panagopoulos3Department of Physics, University of CyprusDepartment of Physics, University of CyprusDepartment of Physics, University of CyprusDepartment of Physics, University of CyprusAbstract We study the mixing of the Gluino-Glue operator in $$\mathcal{N}=1$$ N = 1 Supersymmetric Yang–Mills theory (SYM), both in dimensional regularization and on the lattice. We calculate its renormalization, which is not merely multiplicative, due to the fact that this operator can mix with non-gauge invariant operators of equal or, on the lattice, lower dimension. These operators carry the same quantum numbers under Lorentz transformations and global gauge transformations, and they have the same ghost number. We compute the one-loop quantum correction for the relevant two-point and three-point Green’s functions of the Gluino-Glue operator. This allows us to determine renormalization factors of the operator in the $${\overline{\mathrm{MS}}}$$ MS ¯ scheme, as well as the mixing coefficients for the other operators. To this end our computations are performed using dimensional and lattice regularizations. We employ a standard discretization where gluinos are defined on lattice sites and gluons reside on the links of the lattice; the discretization is based on Wilson’s formulation of non-supersymmetric gauge theories with clover improvement. The number of colors, $$N_c$$ N c , the gauge parameter, $$\beta $$ β , and the clover coefficient, $$c_{\mathrm{SW}}$$ c SW , are left as free parameters.https://doi.org/10.1140/epjc/s10052-021-09173-x
collection DOAJ
language English
format Article
sources DOAJ
author M. Costa
H. Herodotou
P. Philippides
H. Panagopoulos
spellingShingle M. Costa
H. Herodotou
P. Philippides
H. Panagopoulos
Renormalization and mixing of the Gluino-Glue operator on the lattice
European Physical Journal C: Particles and Fields
author_facet M. Costa
H. Herodotou
P. Philippides
H. Panagopoulos
author_sort M. Costa
title Renormalization and mixing of the Gluino-Glue operator on the lattice
title_short Renormalization and mixing of the Gluino-Glue operator on the lattice
title_full Renormalization and mixing of the Gluino-Glue operator on the lattice
title_fullStr Renormalization and mixing of the Gluino-Glue operator on the lattice
title_full_unstemmed Renormalization and mixing of the Gluino-Glue operator on the lattice
title_sort renormalization and mixing of the gluino-glue operator on the lattice
publisher SpringerOpen
series European Physical Journal C: Particles and Fields
issn 1434-6044
1434-6052
publishDate 2021-05-01
description Abstract We study the mixing of the Gluino-Glue operator in $$\mathcal{N}=1$$ N = 1 Supersymmetric Yang–Mills theory (SYM), both in dimensional regularization and on the lattice. We calculate its renormalization, which is not merely multiplicative, due to the fact that this operator can mix with non-gauge invariant operators of equal or, on the lattice, lower dimension. These operators carry the same quantum numbers under Lorentz transformations and global gauge transformations, and they have the same ghost number. We compute the one-loop quantum correction for the relevant two-point and three-point Green’s functions of the Gluino-Glue operator. This allows us to determine renormalization factors of the operator in the $${\overline{\mathrm{MS}}}$$ MS ¯ scheme, as well as the mixing coefficients for the other operators. To this end our computations are performed using dimensional and lattice regularizations. We employ a standard discretization where gluinos are defined on lattice sites and gluons reside on the links of the lattice; the discretization is based on Wilson’s formulation of non-supersymmetric gauge theories with clover improvement. The number of colors, $$N_c$$ N c , the gauge parameter, $$\beta $$ β , and the clover coefficient, $$c_{\mathrm{SW}}$$ c SW , are left as free parameters.
url https://doi.org/10.1140/epjc/s10052-021-09173-x
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AT hherodotou renormalizationandmixingofthegluinoglueoperatoronthelattice
AT pphilippides renormalizationandmixingofthegluinoglueoperatoronthelattice
AT hpanagopoulos renormalizationandmixingofthegluinoglueoperatoronthelattice
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