Quasiclassical theory of disordered multi-channel Majorana quantum wires
arXiv:1302.0747 · doi:10.1088/1367-2630/15/5/055019
Abstract
Multi-channel spin-orbit quantum wires, when subjected to a magnetic field and proximity coupled to s-wave superconductor, may support Majorana states. We study what happens to these systems in the presence of disorder. Inspired by the widely established theoretical methods of mesoscopic superconductivity, we develop a la Eilenberger a quasiclassical approach to topological nanowires valid in the limit of strong spin-orbit coupling. We find that the "Majorana number", distinguishing between the state with Majorana fermion (symmetry class B) and no Majorana (class D), is given by the product of two Pfaffians of gapped quasiclassical Green's functions fixed by right and left terminals connected to the wire. A numerical solution of the Eilenberger equations reveals that the class D disordered quantum wires are prone to the formation of the zero-energy anomaly (class D impurity spectral peak) in the local density of states which shares the key features of the Majorana peak. In this way we confirm the robustness of our previous conclusions [Phys. Rev. Lett. 109, 227005 (2012)] on a more restrictive system setup. Generally speaking, we find that the quasiclassical approach provides a highly efficient means to address disordered class D superconductors both in the presence and absence of topological structures.
14 pages, 7 figures
References in corpus (8)
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Majorana Fermions and a Topological Phase Transition in Semiconductor-Superconductor Heterostructures
- Evidence of Majorana fermions in an Al - InAs nanowire topological superconductor
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- Zero-bias peaks in spin-orbit coupled superconducting wires with and without Majorana end-states
- Zero-voltage conductance peak from weak antilocalization in a Majorana nanowire
- Class D spectral peak in Majorana quantum wires
- Search for Majorana fermions in multiband semiconducting nanowires
Cited by in corpus (40)
- Random-matrix theory of Majorana fermions and topological superconductors
- Physical mechanisms for zero-bias conductance peaks in Majorana nanowires
- Probing Majorana Physics in Quantum Dot Shot Noise Experiments
- Density of states of disordered topological superconductor-semiconductor hybrid nanowires
- Three-terminal nonlocal conductance in Majorana nanowires: Distinguishing topological and trivial in realistic systems with disorder and inhomogeneous potential
- Majorana wavefunction oscillations, fermion parity switches, and disorder in Kitaev chains
- Detecting Majoranas in 1D wires by charge sensing
- Topology vs. Anderson localization: non-perturbative solutions in one dimension
- How to infer non-Abelian statistics and topological invariants from tunneling conductance properties of realistic Majorana nanowires
- Topological phases, edge modes, and the Hofstadter butterfly in coupled Su-Schrieffer-Heeger systems
- Bulk disorder in the superconductor affects proximity-induced topological superconductivity
- Topological and symmetry broken phases of Z_N parafermions in one dimension
- Transport equations for superconductors in the presence of spin interaction
- Majorana zero modes choose Euler numbers - revealed by full counting statistics
- Proposed Method for Distinguishing Majorana Peak from Other Peaks: Tunneling Spectroscopy with Ohmic Dissipation using Resistive Electrodes
- Quasiclassical Eilenberger theory of the topological proximity effect in a superconducting nanowire
- Topological superconductivity in nanowires proximate to a diffusive superconductor-magnetic insulator bilayer
- Generalized Eilenberger theory for Majorana zero-mode-carrying disordered -wave superconductors
- Mean-Field Approximate Optimization Algorithm
- Disorder-induced topological transitions in multichannel Majorana wires
- Time-delay matrix, midgap spectral peak, and thermopower of an Andreev billiard
- Effects of non-equilibrium noise on a quantum memory encoded in Majorana zero modes
- Intrinsic spin-orbit interaction in diffusive normal wire Josephson weak links: supercurrent and density of states
- Effects of geometric frustration in Kitaev chains
- Reentrant topological transitions with Majorana end states in 1D superconductors by lattice modulation
- Entanglement and Disordered-Enhanced Topological Phase in the Kitaev Chain
- Random matrix theory for the robustness, quantization, and end-to-end correlation of zero-bias conductance peaks in a class D ensemble
- Statistical Majorana Bound State Spectroscopy
- Disorder-induced subgap states and Majorana zero-energy edge modes in two-dimensional topological insulator-superconductor hybrid structures
- Edge states, Majorana fermions and topological order in superconducting wires with generalized boundary conditions
- Squashed entanglement in one-dimensional quantum matter
- Resilience of topological superconductivity under particle current
- Fermion-parity switches of the ground state of Majorana billiards
- Long range -wave proximity effect into a disordered metal
- Effect of incommensurate disorder on the resonant tunneling through Majorana bound states on the topological superconductor chains
- Robustness of vortex-bound Majorana zero modes against correlated disorder
- Universal distributions from non-Hermitian Perturbation of Zero-Modes
- Universal Broadening of Zero Modes: A General Framework and Identification
- Preserving Topology while Breaking Chirality: From Chiral Orthogonal to Anti-symmetric Hermitian Ensemble
- Topological squashed entanglement: nonlocal order parameter for one-dimensional topological superconductors