Exposing local symmetries in distorted driven lattices via time-averaged invariants.

Wulf, T; Morfonios, C V; Diakonos, F K; Schmelcher, P · Phys Rev E · 2016

basic_science · Level V

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Abstract

Time-averaged two-point currents are derived and shown to be spatially invariant within domains of local translation or inversion symmetry for arbitrary time-periodic quantum systems in one dimension. These currents are shown to provide a valuable tool for detecting deformations of a spatial symmetry in static and driven lattices. In the static case the invariance of the two-point currents is related to the presence of time-reversal invariance and/or probability current conservation. The obtained insights into the wave functions are further exploited for a symmetry-based convergence check which is applicable for globally broken but locally retained potential symmetries.