从高协变导数正则化看超对称理论的量子修正结构和精确结果

IF 1 4区 物理与天体物理 Q3 PHYSICS, MATHEMATICAL
K. V. Stepanyantz
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引用次数: 0

摘要

摘要 我们回顾了最近对使用斯拉夫诺夫的高协变导数正则化推导出的超对称理论中的量子修正的一些研究成果。特别是,我们证明了如果理论是用高协变导数正则化的、重正化群函数是用裸耦合定义的,那么(\mathcal{N}=1\)超对称理论的(\beta\)函数是通过NSVZ关系与物质超场的反常维度相关的,因为相应的环修正是由动量空间的双全导数积分给出的。对于标准重正化群函数,我们证明当高协变导数正则化被对数最小减法补充时,全环NSVZ重正化方案是由HD(\,+\,\)MSL重正化处方给出的。简要介绍了这些结果在各种超对称理论精确计算中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The structure of quantum corrections and exact results in supersymmetric theories from the higher covariant derivative regularization

The structure of quantum corrections and exact results in supersymmetric theories from the higher covariant derivative regularization

Abstract

We review some recent results of the studies of quantum corrections in supersymmetric theories derived using Slavnov’s higher covariant derivative regularization. In particular, we demonstrate that the \(\beta\)-function of \(\mathcal{N}=1\) supersymmetric theories is related to the anomalous dimensions of matter superfields by the NSVZ relation if the theory is regularized by higher covariant derivatives and the renormalization group functions are defined in terms of the bare couplings, because the corresponding loop corrections are given by integrals of double total derivatives in the momentum space. For the standard renormalization-group functions, we show that an all-loop NSVZ renormalization scheme is given by the HD\(\,+\,\)MSL renormalization prescription when the higher covariant derivative regularization is supplemented by minimal subtractions of logarithms. Applications of these results to the precise calculations in various supersymmetric theories are briefly described.

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来源期刊
Theoretical and Mathematical Physics
Theoretical and Mathematical Physics 物理-物理:数学物理
CiteScore
1.60
自引率
20.00%
发文量
103
审稿时长
4-8 weeks
期刊介绍: Theoretical and Mathematical Physics covers quantum field theory and theory of elementary particles, fundamental problems of nuclear physics, many-body problems and statistical physics, nonrelativistic quantum mechanics, and basic problems of gravitation theory. Articles report on current developments in theoretical physics as well as related mathematical problems. Theoretical and Mathematical Physics is published in collaboration with the Steklov Mathematical Institute of the Russian Academy of Sciences.
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