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Zeeman-split mesoscopic transport through a normal-metal–quantum-dot–superconductor system with ac response

机译:塞曼分裂介观传输通过具有交流响应的正常金属量子点超导体系统

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摘要

We have investigated the Zeeman-split mesoscopic transport through the normal-metal–quantum-dot–superconductor system applied with a microwave field. We employ BCS theory to describe the Hamiltonian of the superconducting lead. The time-averaged tunneling current formula is derived by using the Keldysh’s nonequilibrium Green-function technique in the Nambu representation. The multilevel quantum dot is considered for the noninteraction system in the calculations. The spin split Andreev reflection and photon-electron pumping behaviors are investigated in the presence of a Zeeman magnetic field. The resonant structure versus Zeeman energy and gate voltage is revealed. The Zeeman-split photon-assisted I-V characteristics are evaluated for the single-channel quantum-dot system. By adjusting the Zeeman magnetic field, we can obtain a large resonant tunneling current even if in the Andreev reflection regime. The current appears to have interesting structures versus Zeeman energy for the multichannel quantum-dot system associated with a different gate voltage. The negative and positive current appear in the symmetric forms by controlling the Zeeman field.
机译:我们已经研究了通过微波作用下的普通金属-量子点-超导体系统的塞曼分裂介观传输。我们采用BCS理论来描述超导导线的哈密顿量。时间平均隧道电流公式是使用Nambu表示法中的Keldysh的非平衡格林函数技术得出的。在计算中将多级量子点用于非相互作用系统。在存在塞曼磁场的情况下研究了自旋分裂安德列夫反射和光子电子泵浦行为。揭示了谐振结构与塞曼能量和栅极电压的关系。对单通道量子点系统评估了Zeeman分裂光子辅助的I-V特性。通过调整塞曼磁场,即使在安德列夫反射状态下,我们也可以获得较大的共振隧穿电流。对于与不同栅极电压相关的多通道量子点系统,电流与塞曼能量相比似乎具有有趣的结构。通过控制塞曼场,负电流和正电流以对称形式出现。

著录项

  • 作者

    Wang J; Zhao HK;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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