Asymptotic freedom using a gluon mass as a regulator

J. Gálvez-Viruet, M. Gómez-Rocha
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引用次数: 1

Abstract

Front-Form Hamiltonian dynamics provides a framework in which QCD’s vacuum is simple and states are boost invariant. However, canonical expressions are divergent and must be regulated in order to establish well-defined eigenvalue problems. The Renormalization Group Procedure for Effective Particles (RGPEP) provides a systematic way of finding counterterms and obtaining regulated Hamiltonians. Among its achievements is the description of asymptotic freedom, with a running coupling constant defined as the coefficient in front of the three gluon-vertex operators in the regulated Hamiltonian. However, the obtained results need a deeper understanding, since the coupling exhibits a finite dependence on the regularization functions, at least at the third-order term in the perturbative expansion. Here we present a similar derivation using a different regularization scheme based on massive gluons. The procedure can be extended to incorporate contributions from virtual fermions.
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使用胶子质量作为调节器的渐近自由
前形式哈密顿动力学提供了一个框架,在这个框架中,QCD的真空是简单的,状态是升压不变的。然而,规范表达式是发散的,必须进行规范,以建立良好定义的特征值问题。有效粒子重整化群程序(RGPEP)提供了一种寻找反项和获得调节哈密顿量的系统方法。它的成就之一是描述了渐近自由,并将一个运行耦合常数定义为调节哈密顿量中三个胶子顶点算子前面的系数。然而,得到的结果需要更深入的理解,因为耦合表现出对正则化函数的有限依赖,至少在微扰展开的三阶项上是如此。在这里,我们提出了一个类似的推导,使用基于大质量胶子的不同正则化方案。这个过程可以扩展到包含虚费米子的贡献。
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