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Spin-polarized conductance in double quantum dots: Interplay of Kondo, Zeeman, and interference effects

机译:双量子点中的自旋极化电导:近藤,塞曼和干扰效应的相互作用

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摘要

We study the effect of a magnetic field in the Kondo regime of a double-quantum-dot system consisting of a strongly correlated dot (the "side dot") coupled to a second, noninteracting dot that also connects two external leads. We show, using the numerical renormalization group, that application of an in-plane magnetic field sets up a subtle interplay between electronic interference, Kondo physics, and Zeeman splitting with nontrivial consequences for spectral and transport properties. The value of the side-dot spectral function at the Fermi level exhibits a nonuniversal field dependence that can be understood using a form of the Friedel sum rule that appropriately accounts for the presence of an energy- and spin-dependent hybridization function. The applied field also accentuates the exchange-mediated interdot coupling, which dominates the ground state at intermediate fields leading to the formation of antiparallel magnetic moments on the dots. By tuning gate voltages and the magnetic field, one can achieve complete spin polarization of the linear conductance between the leads, raising the prospect of applications of the device as a highly tunable spin filter. The system's low-energy properties are qualitatively unchanged by the presence of weak on-site Coulomb repulsion within the second dot.
机译:我们研究了由强相关点(“侧点”)耦合到第二个非相互作用点(也连接两个外部引线)组成的双量子点系统的近藤状态下磁场的影响。我们显示,使用数值重归一化组,平面内磁场的应用在电子干扰,近藤物理学和塞曼分裂之间建立了微妙的相互作用,对光谱和传输特性产生了不小的影响。费米能级上的边点谱函数的值显示出非通用的场依赖性,可以使用弗里德尔和规则的形式来理解该场依赖性,该弗里德尔求和规则适当地考虑了依赖于能量和自旋的杂交函数的存在。所施加的场还加重了交换介导的点间耦合,该耦合主导了中间场的基态,从而导致在点上形成反平行磁矩。通过调节栅极电压和磁场,可以实现引线之间线性电导的完全自旋极化,从而提高了该器件作为高度可调自旋滤波器的应用前景。由于第二个点内存在较弱的现场库仑排斥力,该系统的低能特性在质量上没有变化。

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  • 来源
    《Physical review》 |2013年第20期|205313.1-205313.11|共11页
  • 作者单位

    Instituto de Fisica, Universidade de Sao Paulo, C.P. 66318, 05315-970 Sao Paulo, SP, Brazil;

    Instituto de Fisica, Universidade Federal de Uberlandia, Uberlandia, MG 38400-902, Brazil;

    Department of Physics, University of Florida, P.O. Box 118440, Gainesville, Florida 32611-8440, USA;

    Department of Physics and Astronomy, and Nanoscale and Quantum Phenomena Institute, Ohio University, Athens, Ohio 45701-2979, USA,Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universitaet Berlin, 14195 Berlin, Germany;

    Department of Physics and Astronomy, and Nanoscale and Quantum Phenomena Institute, Ohio University, Athens, Ohio 45701-2979, USA,Dahlem Center for Complex Quantum Systems and Fachbereich Physik, Freie Universitaet Berlin, 14195 Berlin, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    quantum dots; scattering by point defects; dislocations; surfaces; and other imperfections (including kondo effect); scattering mechanisms and kondo effect;

    机译:量子点;点缺陷散射;脱臼;表面;和其他缺陷(包括近藤效应);散射机制和近藤效应;

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