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arXiv:2006.04790·v2·Mesoscale and Nanoscale Physics

The effect of anisotropy on phase transitions in graphene

M.E. Carrington🇨🇦 · A.R. Frey🇨🇦 · B.A. Meggison🇨🇦

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Abstract

We study the effect of anisotropy (strain) on dynamical gap generation in graphene. We work with a low energy effective theory obtained from a tight-binding Hamiltonian expanded around the Dirac points in momentum space. We use a non-perturbative Schwinger-Dyson approach and calculate a coupled set of five momentum dependent dressing functions. Our results show that the critical coupling depends only weakly on the anisotropy parameter, and increases with greater anisotropy.

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