Index theorem and overlap formalism with naive and minimally doubled fermions

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Abstract

We present a theoretical foundation for the index theorem in naive and minimally doubled lattice fermions by studying the spectral flow of a Hermitean version of Dirac operators. We utilize the point splitting method to implement flavored mass terms, which play an important role in constructing proper Hermitean operators. We show the spectral flow correctly detects the index of the would-be zero modes which is determined by gauge field topology and the number of species doublers. Using the flavored mass terms, we present new types of overlap fermions from the naive fermion kernels, with a number of flavors that depends on the choice of the mass terms.

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Kimura, T., Creutz, M., & Misumi, T. (2011). Index theorem and overlap formalism with naive and minimally doubled fermions. In Proceedings of Science (Vol. 139). Sissa Medialab Srl. https://doi.org/10.22323/1.139.0106

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