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Towards the spectrum of low-lying particles in supersymmetric Yang-Mills theory

机译:对超对称杨米尔斯理论中低洼粒子的光谱

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摘要

The non-perturbative properties of supersymmetric theories are of interest for elementary particle physics beyond the Standard Model. Numerical simulations of these theories are associated with theoretical and technical challenges. The minimal supersymmetric model containing gauge fields is the ( mathcal{N}=1 ) supersymmetric Yang-Mills theory. We present the results of our investigations of the masses of the lightest particles of this model on a lattice. The central question is, whether a continuum limit exists with unbroken supersymmetry. In this case the bound states would form mass-degenerate supermultiplets. We have obtained the masses of the gluino-glue particle, mesonic states, and the scalar glueball at a fine lattice spacing. The statistical accuracy as well as the control of finite size effects and lattice artefacts are significantly better than in all previous investigations. Taking the statistical and systematic uncertainties into account, the masses of the fermionic and bosonic states in our present calculations are consistent with the formation of degenerate supermultiplets, indicating that in the continuum limit there is no spontaneous supersymmetry breaking. This new finding is in contrast to previous results.
机译:超对称理论的非摄动性质是标准模型以外的基本粒子物理学所关注的。这些理论的数值模拟与理论和技术挑战相关。包含规范场的最小超对称模型是(mathcal {N} = 1)超对称Yang-Mills理论。我们介绍了我们对该模型上最轻的粒子的质量进行研究的结果。中心问题是,是否存在连续的超对称性极限。在这种情况下,结合态将形成质量简并的超多重子。我们已经获得了胶合剂胶粒的质量,介子态和标量胶球的质量,它们的间距很小。统计准确性以及对有限尺寸效应和晶格伪像的控制明显优于所有先前的研究。考虑到统计和系统的不确定性,在我们目前的计算中,铁离子态和玻色子态的质量与简并超多重子的形成是一致的,表明在连续谱极限中没有自发的超对称性破裂。这一新发现与以前的结果形成了鲜明对比。

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