Majorana zero modes in semiconductor-superconductor hybrid structures: Defining topology in short and disordered nanowires through Majorana splitting
arXiv:2507.00128 · doi:10.1103/2v41-yvs1
Abstract
Majorana zero modes (MZMs) are bound midgap topological excitations at the ends of a 1D topological superconductor, which must come in pairs. If the two MZMs in the pair are sufficiently well-separated by a distance much larger than their individual localization lengths, then the MZMs behave as non-Abelian anyons which can be braided to carry out fault-tolerant topological quantum computation. In this `topological' regime of well-separated MZMs, their overlap is exponentially small, leading to exponentially small Majorana splitting, thus enabling the MZMs to be topologically protected by the superconducting gap. In real experimental samples, however, the existence of disorder and the finite length of the 1D wire considerably complicate the situation, leading to ambiguities in defining `topology' since the Majorana splitting between the two end modes may not necessarily be small in disordered wires of short length. We theoretically study this situation by calculating the splitting in experimentally relevant short disordered wires, and explicitly investigating the applicability of the `exponential protection' constraint as a function of disorder, wire length, and other system parameters in realistic models of nanowires currently being used experimentally. We find that the exponential regime is highly constrained, and is suppressed for disorder somewhat less than the topological superconducting gap. We provide detailed results and discuss the implications of our theory for the currently active experimental search for MZMs in superconductor-semiconductor hybrid platforms. A general consequence of our work is that `topology' in finite disordered wires may not be uniquely defined, necessitating a careful analysis which depends on the context.
25 pages, 27 figures
References in corpus (63)
- Non-Abelian Anyons and Topological Quantum Computation
- Unpaired Majorana fermions in quantum wires
- 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
- Evidence of Majorana fermions in an Al - InAs nanowire topological superconductor
- A generic new platform for topological quantum computation using semiconductor heterostructures
- Observation of Majorana Fermions in a Nb-InSb Nanowire-Nb Hybrid Quantum Device
- Exponential Protection of Zero Modes in Majorana Islands
- 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
- Topologically-Protected Qubits from a Possible Non-Abelian Fractional Quantum Hall State
- Quantized Majorana conductance
- Non-Abelian quantum order in spin-orbit-coupled semiconductors: The search for topological Majorana particles in solid state systems
- Scaling of Majorana Zero-Bias Conductance Peaks
- Andreev bound states versus Majorana bound states in quantum dot-nanowire-superconductor hybrid structures: Trivial versus topological zero-bias conductance peaks
- A Majorana smoking gun for the superconductor-semiconductor hybrid topological system
- Quantized conductance at the Majorana phase transition in a disordered superconducting wire
- Midgap edge states and pairing symmetry of quasi-one-dimensional organic superconductors
- Physical mechanisms for zero-bias conductance peaks in Majorana nanowires
- Proximity effect at the superconductor - topological insulator interface
- InAs-Al Hybrid Devices Passing the Topological Gap Protocol
- Scattering formula for the topological quantum number of a disordered multi-mode wire
- Griffiths effects and quantum critical points in dirty superconductors without spin-rotation invariance: One-dimensional examples
- Scattering theory of topological insulators and superconductors
- Probability distribution of Majorana end-state energies in disordered wires
- Splitting of Majorana modes due to intervortex tunneling in a p + ip superconductor
- Robustness of Majorana fermions in 2D topological superconductors
- Disorder-induced zero-bias peaks in Majorana nanowires
- Majorana splitting from critical currents in Josephson junctions
- Distinguishing topological Majorana bound states from trivial Andreev bound states: Proposed tests through differential tunneling conductance spectroscopy
- Estimating disorder and its adverse effects in semiconductor Majorana nanowires
- Tunneling of anyonic Majorana excitations in topological superconductors
- Non-adiabatic Effects in the Braiding of Non-Abelian Anyons in Topological Superconductors
- Intrinsic Gap of the nu=5/2 Fractional Quantum Hall State
- Quantifying wave-function overlaps in inhomogeneous Majorana nanowires
- Three-terminal nonlocal conductance in Majorana nanowires: Distinguishing topological and trivial in realistic systems with disorder and inhomogeneous potential
- Topological Protection of Majorana Qubits
- Correlations between Majorana fermions through a superconductor
- Majorana wavefunction oscillations, fermion parity switches, and disorder in Kitaev chains
- Generic quantized zero-bias conductance peaks in superconductor-semiconductor hybrid structures
- Effects of large induced superconducting gap on semiconductor Majorana nanowires
- How to infer non-Abelian statistics and topological invariants from tunneling conductance properties of realistic Majorana nanowires
- Quantized and unquantized zero-bias tunneling conductance peaks in Majorana nanowires: Conductance below and above
- Proximity-induced low-energy renormalization in hybrid semiconductor-superconductor Majorana structures
- Conductance of a superconducting Coulomb blockaded Majorana nanowire
- In search of Majorana
- Fractional Josephson Effect with and without Majorana Zero Modes
- Large zero bias peaks and dips in a four-terminal thin InAs-Al nanowire device
- Metamorphosis of Andreev bound states into Majorana bound states in pristine nanowires
- Spectral properties, topological patches, and effective phase diagrams of finite disordered Majorana nanowires
- Soft superconducting gap in semiconductor-based Majorana nanowires
- On-demand large-conductance in trivial zero-bias tunneling peaks in Majorana nanowires
- Majorana oscillations and parity crossings in semiconductor-nanowire-based transmon qubits
- Density of states, transport, and topology in disordered Majorana nanowires
- Majorana nanowires, Kitaev chains, and spin models
- Superconducting proximity effect in semiconductor nanowires
- Theory of Coulomb blockaded transport in realistic Majorana nanowires
- Disordered Majorana nanowires: Studying disorder without any disorder
- Machine Learning the Disorder Landscape of Majorana Nanowires
- Random matrix theory for the robustness, quantization, and end-to-end correlation of zero-bias conductance peaks in a class D ensemble
- Vision transformer based Deep Learning of Topological indicators in Majorana Nanowires
- Identifying biases of the Majorana scattering invariant