Signatures of Majorana bound states in scanning gate microscopy of hybrid nanowires
arXiv:2501.14562 · doi:10.1103/bc9x-lswp
Abstract
We theoretically study scanning gate microscopy of a superconductor-proximitized semiconducting wire focusing on the potential for detection of Majorana bound states. We exploit the possibility to create a local potential perturbation by the scanning gate tip which allows controllable modification of the spatial distribution of the Majorana modes, which is translated into changes in their energy structure. When the tip scans across the system, it effectively divides the wire into two parts with controllable lengths, in which two pairs of Majorana states are created when the system is in the topological regime. For strong values of the tip potential, the pairs are decoupled, and the presence of Majorana states can be detected via local tunneling spectroscopy that resolves the energy splittings resulting from the Majorana states wave functions overlap. Importantly, as the system is probed spatially via the tip, this technique can distinguish Majorana bound states from quasi-Majorana states localized on smooth potential barriers. We demonstrate that for weaker tip potentials, the two neighboring Majorana states hybridize, opening pronounced anticrossings in the energy spectra which are reflected in local conductance maps and which result in non-zero non-local conductance features. Finally, we demonstrate that the scanning gate microscopy technique can be used to discriminate between the trivial and topological nature of the zero-bias conductance peak in disordered wires.
References in corpus (38)
- Non-Abelian Anyons and Topological Quantum Computation
- Signatures of Majorana fermions in hybrid superconductor-semiconductor nanowire devices
- Majorana Fermions and a Topological Phase Transition in Semiconductor-Superconductor Heterostructures
- Non-Abelian quantum order in spin-orbit-coupled semiconductors: The search for topological Majorana particles in solid state systems
- A Majorana smoking gun for the superconductor-semiconductor hybrid topological system
- Physical mechanisms for zero-bias conductance peaks in Majorana nanowires
- Disorder-induced zero-bias peaks in Majorana nanowires
- Imaging Magnetic Focusing of Coherent Electron Waves
- Andreev rectifier: a nonlocal conductance signature of topological phase transitions
- Josephson Diode Effect in High Mobility InSb Nanoflags
- Relating Andreev Bound States and Supercurrents in Hybrid Josephson Junctions
- Shadow-wall lithography of ballistic superconductor-semiconductor quantum devices
- Imaging Electron Wave Functions Inside Open Quantum Rings
- Quantized and unquantized zero-bias tunneling conductance peaks in Majorana nanowires: Conductance below and above
- Electron interferometer formed with a scanning probe tip and quantum point contact
- Signatures of a topological phase transition in a planar Josephson junction
- Local Density of States in Mesoscopic Samples from Scanning Gate Microscopy
- Imaging Electron Interferometer
- Local and Nonlocal Transport Spectroscopy in Planar Josephson Junctions
- Spectral properties, topological patches, and effective phase diagrams of finite disordered Majorana nanowires
- Supercurrent diode effect in thin film Nb tracks
- Control of Andreev bound states using superconducting phase texture
- Majorana quasiparticles of inhomogeneous Rashba chain
- Imaging Andreev Reflection in Graphene
- Full parity phase diagram of a proximitized nanowire island
- Single-shot fabrication of semiconducting-superconducting nanowire devices
- Half-integer Shapiro steps in highly transmissive InSb nanoflag Josephson junctions
- Controlling Andreev bound states with the magnetic vector potential
- Microwave-frequency scanning gate microscopy of a Si/SiGe double quantum dot
- Renormalization of the Majorana bound state decay length in a perpendicular magnetic field
- Effect of topological length on Bound states signatures in a Topological nanowire
- Theory of scanning gate microscopy imaging of the supercurrent distribution in a planar Josephson junction
- Scanning gate microscopy mapping of edge current and branched electron flow in a transition metal dichalcogenide nanoribbon and quantum point contact
- Superconducting Quantum Interference Devices based on InSb nanoflag Josephson junctions
- Imaging of double slit interference by scanning gate microscopy
- Scanning gate microscopy of nonretracing electron-hole trajectories in a normal-superconductor junction
- Side-gate modulation of supercurrent in InSb nanoflag-based Josephson junctions
- Enhancement of the topological regime in elongated Josephson junctions