Quantum interference in topological insulator Josephson junctions
arXiv:1602.00813 · doi:10.1103/PhysRevB.93.195302
Abstract
Using non-equilibrium Green's functions, we studied numerically the transport properties of a Josephson junction, superconductor-topological insulator-superconductor hybrid system. Our numerical calculation shows first that proximity-induced superconductivity is indeed observed in the edge states of a topological insulator adjoining two superconducting leads and second that the special characteristics of topological insulators endow the edge states with an enhanced proximity effect with a superconductor but do not forbid the bulk states to do the same. In a size-dependent analysis of the local current, it was found that a few residual bulk states can lead to measurable resistance, whereas because these bulk states spread over the whole sample, their contribution to the interference pattern is insignificant when the sample size is in the micrometer range. Based on these numerical results, it is concluded that the apparent disappearance of residual bulk states in the superconducting interference process as described in Ref. [\onlinecite{HartNautrePhys2014f}] is just due to the effects of size: the contribution of the topological edge states outweighs that of the residual bulk states.
8 pages and 4 figures
References in corpus (17)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Nonlocal edge state transport in the quantum spin Hall state
- The Quantum Spin Hall Effect: Theory and Experiment
- Quantum Spin Hall Effect in Inverted Type II Semiconductors
- Topological Anderson Insulator
- Finite size effects of helical edge states in HgTe/CdTe quantum wells
- Edge-mode Superconductivity in a Two Dimensional Topological Insulator
- Fermion-parity anomaly of the critical supercurrent in the quantum spin-Hall effect
- Conductance of a helical edge liquid coupled to a magnetic impurity
- The dependence of topological Anderson insulator on the type of disorder
- Magnetic field induced localization in 2D topological insulators
- Quantum interference of edge supercurrents in a two-dimensional topological insulator
- Proximity-induced superconductivity and Josephson critical current in quantum spin Hall systems
- Effect of impurities on the Josephson current through helical metals: Exploiting a neutrino paradigm
- Strain designed Josephson junction qubits with topological insulators
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