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4$\pi$ and 8$\pi$ dual Josephson effects induced by symmetry defects

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arxiv 1901.03342 v1 pith:GUKEXJ73 submitted 2019-01-10 cond-mat.mes-hall

classification cond-mat.mes-hall
keywords josephsonquantumdefectsdualeffectpumpssuperconductingsymmetry
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abstract

In topological insulator edges, the duality between the Zeeman field orientation and the proximitized superconducting phase has been recently exploited to predict a magneto-Josephson effect with a 4$\pi$ periodicity. We revisit this latter Josephson effect in the light of this duality and show that the same 4$\pi$ quantum anomaly occurs when bridging two spinless Thouless pumps to a p-wave superconducting region that could be as small as a single and experimentally-relevant superconducting quantum dot - a point-like defect. This interpretation as a dual Josephson effect never requires the presence of Majorana modes but rather builds on the topological properties of adiabatic quantum pumps with Z topological invariants. It allows for the systematic construction of dual Josephson effects of arbitrary periodicity, such as 4$\pi$ and 8$\pi$, by using point-like defects whose symmetry differs from that of the pump, dubbed symmetry defects. Although adiabatic quantum pumps are typically discussed via mappings to two-dimensional geometries, we show that this phenomenology does not have any counterpart in conventional two-dimensional systems.

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Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Topological states in the Hofstadter model on a honeycomb lattice

    cond-mat.str-el 2019-08 reject novelty 4.0 of 10

    The chiral edge modes of the honeycomb Hofstadter model are mapped to Kitaev chains, giving a Hall conductance formula for arbitrary flux and a stability criterion U > 4Δ against on-site repulsion.

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