Edge states, Majorana fermions and topological order in superconducting wires with generalized boundary conditions
arXiv:2207.01423 · doi:10.1103/PhysRevB.106.155407
Abstract
We study the properties of one-dimensional topological superconductors under the influence of generic boundary conditions mimicking the coupling with external environments. We identify a general four-parameters classification of the boundary effects and show that particle-hole and reflection symmetries can be broken or preserved by appropriately fixing the boundary parameters. When the particle-hole symmetry is broken, the topological protection of the edge modes is lost due to the hybridization with the external degrees of freedom (quasiparticle poisoning). We assess the robustness of the edge modes in the various regimes by considering different quantifiers of topological properties. In particular, we investigate the resilience of the long-distance, edge-to-edge quantum mutual information and squashed entanglement, measuring the nonlocal correlations of the Majorana excitations. Besides their relevance for the open dynamics of topological systems, these results may provide a useful guide to the appropriate embedding of low-dimensional topological systems on nanodevices in realistic conditions.
11 pages, 5 figures
References in corpus (24)
- Superconducting proximity effect and Majorana fermions at the surface of a topological insulator
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Majorana Fermions and a Topological Phase Transition in Semiconductor-Superconductor Heterostructures
- Quantized Anomalous Hall Effect in Magnetic Topological Insulators
- Observation of Majorana Fermions in Ferromagnetic Atomic Chains on a Superconductor
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- Anomalous modulation of a zero bias peak in a hybrid nanowire-superconductor device
- Scaling of Majorana Zero-Bias Conductance Peaks
- Transport spectroscopy of NS nanowire junctions with Majorana fermions
- Towards a realistic transport modeling in a superconducting nanowire with Majorana fermions
- A Majorana smoking gun for the superconductor-semiconductor hybrid topological system
- Observing Majorana Bound States in p-wave Superconductors Using Noise Measurements in Tunneling Experiments
- Kitaev chains with long-range pairing
- SNS junctions in nanowires with spin-orbit coupling: role of confinement and helicity on the sub-gap spectrum
- Zero bias conductance peak in Majorana wires made of semiconductor-superconductor hybrid structures
- Localization in disordered superconducting wires with broken spin-rotation symmetry
- Supercurrent and multiple Andreev reflections in an InSb nanowire Josephson junction
- Mutation of Andreev into Majorana bound states in long NS and SNS junctions
- Majorana fermions in density modulated p-wave superconducting wires
- Unveiling Signatures of Topological Phases in Open Kitaev Chains and Ladders
- Testing the formation of Majorana states using the Majorana Polarization
- Effects of finite superconducting coherence lengths and of phase gradients in topological SN and SNS junctions and rings
- Topological phases of an interacting Majorana Benalcazar-Bernevig-Hughes model
- Rigidity of topological invariants to symmetry breakings