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首页> 外文期刊>The journal of high energy physics >Supersymmetry anomaly in the superconformal Wess-Zumino model
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Supersymmetry anomaly in the superconformal Wess-Zumino model

机译:超微正制WESS-Zumino模型中的超对称异常

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A bstract We present a comprehensive analysis of supersymmetry anomalies in the free and massless Wess-Zumino (WZ) model in perturbation theory. At the classical level the model possesses N documentclass[12pt]{minimal} usepackage{amsmath} usepackage{wasysym} usepackage{amsfonts} usepackage{amssymb} usepackage{amsbsy} usepackage{mathrsfs} usepackage{upgreek} setlength{oddsidemargin}{-69pt} egin{document}$$ mathcal{N} $$end{document} = 1 superconformal symmetry, which is partially broken by quantum anomalies. The form of the anomalies and the part of the symmetry they break depend on the multiplet of conserved currents used. It was previously shown that the R-symmetry anomaly of the conformal current multiplet induces an anomaly in Q-supersymmetry, which appears first in 4-point functions. Here we confirm this result by an explicit 1-loop computation using a supersymmetric Pauli-Villars regulator.The conformal current multiplet does not exist in the regulated theory because the regulator breaks conformal invariance, R-symmetry and S-supersymmetry explicitly. The minimal massive multiplet is the Ferrara-Zumino (FZ) one and the supersymmetry preserved by the regulator is a specific field dependent combination of Q- and S- supersymmetry of the conformal multiplet. While this supersymmetry is non anomalous, conformal invariance, R-symmetry and the original Q- and S-supersymmetries are explicitly broken by finite contact terms, both in the regulated and renormalized theories.A conformal current multiplet does exist for the renormalized theory and may be obtained from the FZ multiplet by a set of finite local counterterms that eliminate the explicit symmetry breaking, thus restoring superconformal invariance up to anomalies. However, this necessarily renders both Q- and S-supersymmetries anomalous, as is manifest starting at 4-point functions of conformal multiplet currents. The paper contains a detailed discussion of a number of issues and subtleties related to Ward identities that may be useful in a wider context.
机译:一个bstract我们提出超对称性异常的综合分析,在微扰理论的自由和无质量弗兰克韦斯-Zumino(WZ)模型。在经典的水平的模型具有Ñ的DocumentClass [12磅] {最小} usepackage {amsmath} usepackage {wasysym} usepackage {amsfonts} usepackage {amssymb} usepackage {amsbsy} usepackage {mathrsfs} usepackage {upgreek } setlength { oddsidemargin} { - 69pt} {开始文档} $$ mathcal {N} $$ {端文档} = 1个superconformal对称性,这是部分地由量子异常破裂。异常的形式,并且它们打破对称部分取决于所使用的保守电流的多重峰。以前显示的R-对称性异常的保形电流多重峰诱导的异常在Q-超对称,其首先出现在4点的功能。在这里,我们确认这一结果通过使用超对称圣保利 - 维拉尔regulator.The形电流多重明确的单回路计算在规定的理论并不存在,因为监管机构断裂形不变性,R-对称性和S-超对称性明确。最小大规模多重峰是由调节器保留了费拉拉-Zumino(FZ)和所述超对称性是Q-和共形多重峰S-超对称的特定字段依赖性结合。虽然这种超对称为非异常,共形不变性,R-对称性和原始Q-和S-supersymmetries明确通过有限接触术语破碎,无论是在经调节的和重正化theories.A保形电流多重峰确实存在用于重正化理论和可由一组有限本地counterterms在于消除明确的对称性破坏,从而可达恢复superconformal不变性异常从FZ多重峰而获得。然而,这必然使二者Q-和S-supersymmetries异常,由于是明显的起始处的共形多重峰电流的4点的功能。该文件包含了一些与沃德的身份,可能在更大范围内是有用的问题和微妙的详细讨论。

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