Title of article
Anomalies, gauge field topology, and the lattice Original Research Article
Author/Authors
Michael Creutz، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
15
From page
911
To page
925
Abstract
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.
Keywords
Chiral symmetry , Anomalies , Gauge field topology
Journal title
Annals of Physics
Serial Year
2011
Journal title
Annals of Physics
Record number
1206447
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