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Emerging Dirac and Majorana fermions for carbon nanotubes with proximity-induced pairing and spiral magnetic field

机译:具有邻近感应配对和螺旋磁场的新兴Dirac和Majorana费米子用于碳纳米管

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摘要

We study the low-energy band structure of armchair and small-band-gap semiconducting carbon nanotubes with proximity-induced superconducting pairing when a spiral magnetic field creates strong effective spin-orbit interactions from the Zeeman term and a periodic potential from the orbital part. We find that gapless Dirac fermions can be generated by variation of a single parameter. For a small-band-gap semiconducting tube with the field in the same plane, a nondegenerate zero mode at momentum k = 0 can be induced, allowing for the generation of topologically protected Majorana fermion end states.
机译:当螺旋磁场从Zeeman项产生强大的有效自旋轨道相互作用并从轨道部分产生周期性势能时,我们研究了具有邻近感应超导对的扶手椅和小带隙半导体碳纳米管的低能带结构。我们发现可以通过改变单个参数来生成无间隙狄拉克费米子。对于在同一平面上具有相同电场的小带隙半导体管,可以诱导出在动量k = 0处的简并零模,从而产生拓扑受保护的马里亚纳费米子终结态。

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