arXiv · 1507.03898
Flux sensitivity of quantum spin Hall rings
Abstract
We analyse the periodicity of persistent currents in quantum spin Hall loops, partly covered with an $s$-wave superconductor, in the presence of a flux tube. Much like in normal (non-helical) metals, the periodicity of the single-particle spectrum goes from $Φ_0 = h/e$ to $Φ_0/2$ as the length of the superconductor is increased past the coherence length of the superconductor. We further analyze the periodicity of the persistent current, which is a many-body effect. Interestingly, time reversal symmetry and parity conservation can significantly change the period. We find a $2Φ_0$-periodic persistent current in two distinct regimes, where one corresponds to a Josephson junction and the other one to an Aharonov-Bohm setup.
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François Crépin, Björn Trauzettel. 2015-09-24. Flux sensitivity of quantum spin Hall rings. https://doi.org/10.1016/j.physe.2015.09.026
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