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Floquet engineering of optical solenoids and quantized charge pumping along tailored paths in two-dimensional Chern insulators

Published 19 Feb 2018 in cond-mat.quant-gas, cond-mat.mes-hall, physics.atom-ph, and quant-ph | (1802.06815v2)

Abstract: The insertion of a local magnetic flux, as the one created by a thin solenoid, plays an important role in gedanken experiments of quantum Hall physics. By combining Floquet engineering of artificial magnetic fields with the ability of single-site addressing in quantum-gas microscopes, we propose a scheme for the realization of such local solenoid-type magnetic fields in optical lattices. We show that it can be employed to manipulate and probe elementary excitations of a topological Chern insulator. This includes quantized adiabatic charge pumping along tailored paths inside the bulk, as well as the controlled population of edge modes.

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