Disorder effects in planar semiconductor-superconductor structures: Majorana wires versus Josephson junctions
arXiv:2405.12192 · doi:10.1103/PhysRevApplied.23.034068
Abstract
Disorder effects in hybrid semiconductor-superconductor (SM-SC) nanowires, widely recognized as the main obstacle to realizing stable Majorana zero modes (MZMs) in these structures, have been systematically investigated theoretically in recent years. However, there are no corresponding detailed studies of disorder effects in planar Josephson junction (JJ) structures, which represent a promising alternative to the Majorana nanowire platform. In this paper, we perform a numerical analysis of the low-energy physics of JJ structures based on an effective microscopic model that includes two types of disorder, charge impurities inside the semiconductor and roughness on the surface of the superconducting film. We consider different parameter regimes, including low and high chemical potential values, weak and strong effective SM-SC coupling strengths, and weak and strong disorder strengths. The results are benchmarked using disordered hybrid nanowires realized in planar SM-SC structures similar to those involved in the fabrication of Josephson junctions and having similar model parameters and disorder strengths. We find that the topological superconducting phase hosted by a JJ structure is, generally, more robust against disorder than the topological superconductivity realized in a hybrid nanowire with similar parameters. On the other hand, we find that operating the JJ in a regime characterized by large values of chemical potential results in huge finite-size effects that can destroy the stability of MZMs.
27 pages, 27 figures
References in corpus (90)
- Non-Abelian Anyons and Topological Quantum Computation
- 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
- Helical liquids and Majorana bound states in quantum wires
- New directions in the pursuit of Majorana fermions in solid state systems
- Evidence of Majorana fermions in an Al - InAs nanowire topological superconductor
- Search for Majorana fermions in superconductors
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- Topological superconductors: a review
- Majorana fermions in a tunable semiconductor device
- Majorana Zero Modes and Topological Quantum Computation
- Realizing Majorana zero modes in superconductor-semiconductor heterostructures
- Introduction to topological superconductivity and Majorana fermions
- Superconductor-Nanowire Devices from Tunneling to the Multichannel Regime: Zero-Bias Oscillations and Magnetoconductance Crossover
- Anomalous modulation of a zero bias peak in a hybrid nanowire-superconductor device
- Majorana fermions in chains of magnetic atoms on a superconductor
- Topologically-Protected Qubits from a Possible Non-Abelian Fractional Quantum Hall State
- Non-Abelian quantum order in spin-orbit-coupled semiconductors: The search for topological Majorana particles in solid state systems
- Zero-bias peaks in spin-orbit coupled superconducting wires with and without Majorana end-states
- From Andreev to Majorana bound states in hybrid superconductor-semiconductor nanowires
- Scaling of Majorana Zero-Bias Conductance Peaks
- Evidence of topological superconductivity in planar Josephson junctions
- Near-zero-energy end states in topologically trivial spin-orbit coupled superconducting nanowires with a smooth confinement
- Transport spectroscopy of NS nanowire junctions with Majorana fermions
- Topological Superconductivity in a Phase-Controlled Josephson Junction
- Two-dimensional epitaxial superconductor-semiconductor heterostructures: A platform for topological superconducting networks
- Quantized conductance at the Majorana phase transition in a disordered superconducting wire
- Zero-voltage conductance peak from weak antilocalization in a Majorana nanowire
- Class D spectral peak in Majorana quantum wires
- Topological Superconductivity in a Planar Josephson Junction
- The recursive Green's function method for graphene
- Nonlocality of Majorana Modes in Hybrid Nanowires
- Two-dimensional platform for networks of Majorana bound states
- Zero-Energy Modes from Coalescing Andreev States in a Two-Dimensional Semiconductor-Superconductor Hybrid Platform
- Reproducing topological properties with quasi-Majorana states
- Physical mechanisms for zero-bias conductance peaks in Majorana nanowires
- Majorana bound states in non-homogeneous semiconductor nanowires
- Two terminal charge tunneling: Disentangling Majorana zero modes from partially separated Andreev bound states in semiconductor-superconductor heterostructures
- Majorana Fermions in superconducting 1D systems having periodic, quasiperiodic, and disordered potentials
- InAs-Al Hybrid Devices Passing the Topological Gap Protocol
- Quantized conductance doubling and hard gap in a two-dimensional semiconductor-superconductor heterostructure
- Scattering formula for the topological quantum number of a disordered multi-mode wire
- Quantized zero bias conductance plateau in semiconductor-superconductor heterostructures without non-Abelian Majorana zero modes
- SNS junctions in nanowires with spin-orbit coupling: role of confinement and helicity on the sub-gap spectrum
- Topological superconducting phases in disordered quantum wires with strong spin-orbit coupling
- Non-Majorana states yield nearly quantized conductance in superconductor-semiconductor nanowire devices
- Zero-energy Andreev bound states from quantum dots in proximitized Rashba nanowires
- Disorder-induced zero-bias peaks in Majorana nanowires
- Soft Superconducting Gap in Semiconductor Majorana Nanowires
- Ubiquitous non-Majorana Zero-Bias Conductance Peaks in Nanowire Devices
- Phase signature of topological transition in Josephson Junctions
- Selective Area Grown Semiconductor-Superconductor Hybrids: A Basis for Topological Networks
- Estimating disorder and its adverse effects in semiconductor Majorana nanowires
- Effects of electron scattering on the topological properties of nanowires: Majorana fermions from disorder and superlattices
- Localization in disordered superconducting wires with broken spin-rotation symmetry
- Theory of Majorana zero modes in unconventional superconductors
- Robust low-energy Andreev bound states in semiconductor-superconductor heterostructures: Importance of partial separation of component Majorana bound states
- Fusion of Majorana Bound States with Mini-Gate Control in Two-Dimensional Systems
- Proximity-induced low-energy renormalization in hybrid semiconductor-superconductor Majorana structures
- Enhanced proximity effect in zigzag-shaped Majorana Josephson junctions
- Signatures of topological phase transitions in mesoscopic superconducting rings
- Distinguishing trivial and topological zero energy states in long nanowire junctions
- Benefits of weak disorder in one dimensional topological superconductors
- Fractional Josephson Vortices and Braiding of Majorana Zero Modes in Planar Superconductor-Semiconductor Heterostructures
- Signatures of a topological phase transition in a planar Josephson junction
- Tuning Topological Superconductivity in Phase-Controlled Josephson Junctions with Rashba and Dresselhaus Spin-Orbit Coupling
- Topological superconductivity in planar Josephson junctions: Narrowing down to the nanowire limit
- From Andreev bound states to Majorana fermions in topological wires on superconducting substrates : a story of mutation
- Superconducting proximity effect in InAsSb surface quantum wells with in-situ Al contact
- Metamorphosis of Andreev bound states into Majorana bound states in pristine nanowires
- Reentrant topological phase transitions in a disordered spinless superconducting wire
- Disorder effects on Majorana zero modes: Kitaev chain versus semiconductor nanowire
- Phase-induced topological superconductivity in a planar heterostructure
- Partially-separated Majorana modes in a disordered medium
- Anisotropic topological superconductivity in Josephson junctions
- Spectral properties, topological patches, and effective phase diagrams of finite disordered Majorana nanowires
- Full proximity treatment of topological superconductors in Josephson-junction architectures
- Crossover between trivial zero modes in Majorana nanowires
- Planar Josephson junctions in germanium: Effect of cubic spin-orbit interaction
- Disorder-induced topological transitions in multichannel Majorana wires
- Crystalline Anisotropic Topological Superconductivity in Planar Josephson Junctions
- Signatures of Majorana fermions in hybrid normal-superconducting rings
- Signatures of Majorana bound states and parity effects in two-dimensional chiral p-wave Josephson junctions
- Greedy optimization of the geometry of Majorana Josephson junctions
- Random matrix theory for the robustness, quantization, and end-to-end correlation of zero-bias conductance peaks in a class D ensemble
- Phase jumps in Josephson junctions with time-dependent spin-orbit coupling
- Beyond the standard model of topological Josephson junctions: From crystalline anisotropy to finite-size and diode effects
- Stabilizing topological superconductivity in disordered spin-orbit coupled semiconductor-superconductor heterostructures
- Disorder induced topological phase transition in a driven Majorana chain
Cited by in corpus (4)
- Josephson effect and critical currents in trivial and topological full-shell hybrid nanowires
- Multiple Majorana bound states and their resilience against disorder in planar Josephson junctions
- Planar Josephson junction devices with narrow superconducting strips: Topological properties and optimization
- Majorana edge and end states in planar Josephson junctions