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Fermion-Antifermion Condensate Contribution to the Anomalous Magnetic Moment of a Fundamental Dirac Fermion

机译:Fermion-Antifermion冷凝物对基本狄拉克费米子异常磁矩的贡献。

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摘要

We consider the contribution of fermion-antifermion condensates to the anomalous magnetic moment of a fermion in a vacuum in which such condensates exist. The real part of the condensate contribution to the anomalous magnetic moment is shown to be zero. A nonzero imaginary part is obtained below the kinematic threshold for intermediate fermion-antifermion pairs. The calculation is shown to be gauge-parameter independent provided a single fermion mass characterizes both the fermion propagator and condensate-sensitive contributions, suggestive of a dynamically generated fermion mass. The nonzero imaginary part is then argued to correspond to the kinematic production of the intermediate-state Goldstone bosons anticipated from a chiral-noninvariant vacuum. Finally, speculations are presented concerning the applicability of these results to quark electromagnetic properties.
机译:我们考虑到在存在真空冷凝物的真空中,费米子-反离子水分子凝结物对费米子异常磁矩的贡献。凝结水对反常磁矩的贡献的实部显示为零。对于中间的费米-安替米松对,在运动学阈值以下获得了非零虚部。如果单个费米质量代表费米扩散剂和对冷凝物敏感的特征,则表明该计算是与标量参数无关的,这表明动态生成了费米质量。然后认为非零虚部对应于从手性不变真空中预期的中间态戈德斯通玻色子的运动学产生。最后,提出了关于这些结果对夸克电磁性质的适用性的推测。

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