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Hole-doped semiconductor nanowire on top of an s-wave superconductor: A new and experimentally accessible system for Majorana fermions

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arxiv 1105.3483 v4 pith:D4XEUNV5 submitted 2011-05-17 cond-mat.mes-hall cond-mat.mtrl-scicond-mat.supr-conquant-ph

Hole-doped semiconductor nanowire on top of an s-wave superconductor: A new and experimentally accessible system for Majorana fermions

classification cond-mat.mes-hall cond-mat.mtrl-scicond-mat.supr-conquant-ph
keywords majoranafermionshole-dopedzeemanelectron-dopedfieldnanowirerealized
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Majorana fermions were envisioned by E. Majorana in 1935 to describe neutrinos. Recently it has been shown that they can be realized even in a class of electron-doped semiconductors, on which ordinary s-wave superconductivity is proximity induced, provided the time reversal symmetry is broken by an external Zeeman field above a threshold. Here we show that in a hole-doped semiconductor nanowire the threshold Zeeman field for Majorana fermions can be very small for some magic values of the hole density. In contrast to the electron-doped systems, smaller Zeeman fields and much stronger spin-orbit coupling and effective mass of holes allow the hole-doped systems to support Majorana fermions in a parameter regime which is routinely realized in current experiments.

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