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Conductance Quantization at zero magnetic field in InSb nanowires

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arxiv 1603.03751 v1 pith:MZG6IQRK submitted 2016-03-11 cond-mat.mes-hall

Conductance Quantization at zero magnetic field in InSb nanowires

classification cond-mat.mes-hall
keywords conductancefieldmagneticnanowiresballisticinsbquantizationtransport
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Ballistic electron transport is a key requirement for existence of a topological phase transition in proximitized InSb nanowires. However, measurements of quantized conductance as direct evidence of ballistic transport have so far been obscured due to the increased chance of backscattering in one dimensional nanowires. We show that by improving the nanowire-metal interface as well as the dielectric environment we can consistently achieve conductance quantization at zero magnetic field. Additionally, studying the sub-band evolution in a rotating magnetic field reveals an orbital degeneracy between the second and third sub-bands for perpendicular fields above 1T.

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