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Mod-two APS index and domain-wall fermion

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arxiv 2012.03543 v2 pith:6FAN5AQ5 submitted 2020-12-07 hep-th hep-latmath.DG

classification hep-thhep-latmath.DG
keywords fermionboundarydomain-wallindexmanifolddifferentgivenmod-two
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We reformulate the mod-two Atiyah-Patodi-Singer (APS) index in a physicist-friendly way using the domain-wall fermion. Our new formulation is given on a closed manifold, which is extended from the original manifold with boundary, where we instead give a fermion mass term changing its sign at the location of the original boundary. This new setup does not need the APS boundary condition, which is non-local. A mathematical proof of equivalence between the two different formulations is given by two different evaluations of the same index of a Dirac operator on a higher dimensional manifold. The domain-wall fermion allows us to separate the edge and bulk mode contributions in a natural but not in a gauge invariant way, which offers a straightforward description of the global anomaly inflow.

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  1. $\eta$ invariant of massive Wilson Dirac operator and the index

    hep-lat 2025-01 conditional novelty 4.0 of 10

    The massive Wilson Dirac operator's eta invariant equals the continuum Dirac index on flat tori at sufficiently small lattice spacing, via K-theory.

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