Tunneling conductance due to discrete spectrum of Andreev states
arXiv:1211.2722 · doi:10.1088/1367-2630/15/5/055011
Abstract
We study tunneling spectroscopy of discrete subgap Andreev states in a superconducting system. If the tunneling coupling is weak, individual levels are resolved and the conductance at small temperatures is composed of a set of resonant Lorentz peaks which cannot be described within perturbation theory over tunnelling strength. We establish a general formula for their widths and heights and show that the width of any peak scales as normal-state tunnel conductance, while its height is and depends only on contact geometry and the spatial profile of the resonant Andreev level. We also establish an exact formula for the single-channel conductance that takes the whole Andreev spectrum into account. We use it to study the interference of Andreev reflection processes through different levels. The effect is most pronounced at low voltages, where an Andreev level at and its conjugate at interfere destructively. This interference leads to the quantization of the zero-bias conductance: G(0) equals (or 0) if there is (there is not) a Majorana fermion in the spectrum, in agreement with previous results from -matrix theory. We also study for a system with a pair of almost decoupled Majorana fermions with splitting and show that at lowest there is a zero-bias Lorentz peak of width as expected for a single Majorana fermion (a topological NS-junction) with a narrow dip of width at zero bias, which ensures (the NS-junction remains trivial on a very small energy scale). As the coupling gets stronger, the dip becomes narrower, which can be understood as enhanced decoupling of the remote Majorana fermion. Then the zero-bias dip requires extremely low temperatures to be observed.
8 pages, 3 figures
References in corpus (13)
- 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
- 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-voltage conductance peak from weak antilocalization in a Majorana nanowire
- Fermion-parity anomaly of the critical supercurrent in the quantum spin-Hall effect
- Majorana Fermions and Odd-frequency Cooper Pairs in a Nano Wire
- Zero bias conductance peak in Majorana wires made of semiconductor-superconductor hybrid structures
- Proximity Induced Superconductivity and Multiple Andreev Reflections in Few-Layer-Graphene
- Magneto-Josephson effects in junctions with Majorana bound states
- Majorana state on the surface of a disordered 3D topological insulator
- Resonant polaron-assisted tunneling of strongly interacting electrons through a single-level vibrating quantum dot
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