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Electric field tunable superconductor-semiconductor coupling in Majorana nanowires

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arxiv 1806.00988 v1 pith:IZ72PPYW submitted 2018-06-04 cond-mat.mes-hall

Electric field tunable superconductor-semiconductor coupling in Majorana nanowires

classification cond-mat.mes-hall
keywords couplingmajoranaelectricfieldsinducednanowiresspin-orbitsuperconductor-semiconductor
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the effect of external electric fields on superconductor-semiconductor coupling by measuring the electron transport in InSb semiconductor nanowires coupled to an epitaxially grown Al superconductor. We find that the gate voltage induced electric fields can greatly modify the coupling strength, which has consequences for the proximity induced superconducting gap, effective g-factor, and spin-orbit coupling, which all play a key role in understanding Majorana physics. We further show that level repulsion due to spin-orbit coupling in a finite size system can lead to seemingly stable zero bias conductance peaks, which mimic the behavior of Majorana zero modes. Our results improve the understanding of realistic Majorana nanowire systems.

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