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Charge carrier holes and Majorana fermions

机译:充电架孔和马太基亚蜕皮

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摘要

Understanding Luttinger holes in low dimensions is crucial for numerous spin-dependent phenomena and nanotechnology. In particular, hole quantum wires that are proximity coupled to a superconductor is a promising system for the observation ofMajorana fermions. Earlier treatments of confined Luttinger holes ignored a mutual transformation of heavy and light holes at the heteroboundaries. We derive the effective hole Hamiltonian in the ground state. The mutual transformation of holes is crucial for Zeeman and spin-orbit coupling, and results in several spin-orbit terms linear in momentum in hole quantum wires. We discuss the criterion for realizing Majorana modes in charge carrier hole systems. GaAs or InSb hole wires shall exhibit stronger topological superconducting pairing, and provide additional opportunities for its control compared to InSb electron systems.
机译:理解低尺寸的Luttinger孔对于许多旋转依赖性现象和纳米技术来说至关重要。特别地,接近耦合到超导体的孔量子线是用于观察Majorana码米氏颗环的有希望的系统。早期的狭窄的Luttinger孔的处理忽略了异常转化的异常转换。我们派生了地面州的有效孔哈密尔顿。孔的相互转换对于塞曼和旋转轨道耦合至关重要,并导致几个孔量子线的动量线性旋转轨道术语。我们讨论了用于实现电荷载波孔系统中的Majorana模式的标准。 GaAs或Insb孔电线应表现出更强烈的拓扑超导配对,并与INSB电子系统相比,为其控制提供额外的机会。

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  • 来源
    《Physical Review. B, Condensed Matter 》 |2017年第20期| 201404.1-201404.5| 共5页
  • 作者单位

    Department of Physics and Astronomy and Purdue Quantum Center Purdue University West Lafayette Indiana 47907 USA;

    Department of Physics and Astronomy and Purdue Quantum Center Purdue University West Lafayette Indiana 47907 USA;

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