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From Andreev to Majorana bound states in hybrid superconductor–semiconductor nanowires

Elsa Prada, Pablo San-Jose, Michiel W. A. de Moor, Attila Geresdi, Eduardo J. H. Lee, Jelena Klinovaja, Daniel Loss, Jesper Nygård, Ramón Aguado, Leo P. Kouwenhoven

2020Nature Reviews Physics445 citationsDOIOpen Access PDF

Topics & Concepts

Bound stateMAJORANAZeeman effectPhysicsSuperconductivityWave functionQuantum mechanicsCondensed matter physicsGround stateQuantumCoupling (piping)Topology (electrical circuits)HeterojunctionNanowireQuantum computerRealization (probability)Andreev reflectionQuantum stateField (mathematics)State (computer science)Quantum tunnellingBand gapQuantization (signal processing)QuasiparticleTopological insulatorTheoretical physicsElectronic structureMagnetic fieldMacroscopic quantum phenomenaQuantum informationTopological Materials and PhenomenaChemical and Physical Properties of MaterialsGraphene research and applications
From Andreev to Majorana bound states in hybrid superconductor–semiconductor nanowires | Litcius