One-loop lattice study of composite bilinear operators in Supersymmetric QCD

Mário Costa, H. Panagopoulos
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Abstract

We study 4-dimensional SQCD with gauge group SU(Nc) and Nf flavors of chiral supermultiplets on the lattice. We perform extensive calculations of matrix elements and renormalization factors of composite operators in Perturbation Theory. In particular, we compute the renormalization factors of quark and squark bilinears, as well as their mixing at the quantum level with gluino and gluon bilinear operators. From these results we construct correctly renormalized composite operators, which are free of mixing effects and may be employed in non-perturbative studies of Supersymmetry. All our calculations have been performed with massive matter fields, in order to regulate the infrared singularities which are inherent in renormalizing squark bilinears. Furthermore, the quark and squark propagators are computed in momentum space with nonzero masses. This work is a feasibility study for lattice computations relevant to a number of observables, such as spectra and distribution functions of hadrons, but in the context of supersymmetric QCD, as a forerunner to lattice investigations of SUSY extensions of the Standard Model.
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超对称QCD中复合双线性算子的单环格研究
研究了晶格上具有规范群SU(Nc)和Nf口味的手性超重子的四维SQCD。本文对微扰理论中复合算子的矩阵元素和重整化因子进行了广泛的计算。特别地,我们计算了夸克和方克双线性的重整化因子,以及它们与胶子和胶子双线性算子在量子水平上的混合。根据这些结果,我们构造了正确的重整化复合算子,它不受混合效应的影响,可用于超对称的非微扰研究。我们所有的计算都是在大质量物质场中进行的,以调节红外奇点,这是方形双线性重整所固有的。此外,在非零质量的动量空间中计算了夸克和夸克传播子。这项工作是一项与许多可观测值(如强子的光谱和分布函数)相关的晶格计算的可行性研究,但在超对称QCD的背景下,作为标准模型SUSY扩展的晶格研究的先驱。
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