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Anomalies, gauge field topology, and the lattice

机译:异常,量规场拓扑和晶格

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摘要

Motivated by the connection between gauge field topology and the axial anomaly in fermion currents, I suggest that the fourth power of the naive Dirac operator can provide a natural method to define a local lattice measure of topological charge. For smooth gauge fields this reduces to the usual topological density. For typical gauge field configurations in a numerical simulation, however, quantum fluctuations dominate, and the sum of this density over the system does not generally give an integer winding. On cooling with respect to the Wilson gauge action, instanton like structures do emerge. As cooling proceeds, these objects tend shrink and finally " fall through the lattice." Modifying the action can block the shrinking at the expense of a loss of reflection positivity. The cooling procedure is highly sensitive to the details of the initial steps, suggesting that quantum fluctuations induce a small but fundamental ambiguity in the definition of topological susceptibility.
机译:受到规范场拓扑和费米子电流轴向异常之间联系的推动,我建议天真狄拉克算子的四次幂可以提供一种自然的方法来定义拓扑电荷的局部晶格度量。对于光滑规格的场,这会降低到通常的拓扑密度。但是,对于数值模拟中的典型轨距场配置,量子涨落占主导地位,并且该密度在系统上的总和通常不会产生整数绕组。关于威尔逊规范作用的冷却,确实会出现类似瞬时的结构。随着冷却的进行,这些物体趋于收缩,并最终“掉入晶格”。修改动作可以阻止收缩,但会损失反射正性。冷却过程对初始步骤的细节高度敏感,这表明量子涨落在拓扑敏感性的定义中引起了很小但基本的歧义。

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