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首页> 外文期刊>Journal of Applied Physics >Interdot Coulomb correlation effects and spin-orbit coupling in two carbon nanotube quantum dots
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Interdot Coulomb correlation effects and spin-orbit coupling in two carbon nanotube quantum dots

机译:两个碳纳米管量子点的点间库仑相关效应和自旋轨道耦合

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摘要

Transport properties of the two-level Kondo effect involving spin, orbital, and pseudospin degrees of freedom are examined in a parallel carbon nanotube double quantum dot with a sufficient interdot Coulomb interaction and small interdot tunneling. The interdot Coulomb correlation effects are taken into account, and it plays an important role in forming bonding and antibonding states. Attached to ferromagnetic leads, the Kondo effect is observed at the interdot Coulomb blockade region with degeneracy of spin, orbital, and pseudospin degrees of freedom. A crossover from a two-level Kondo state involving the fivefold degeneracy of the double quantum dots to an SU(4) spin-orbit Kondo state and to an SU(2) spin-Kondo effect is demonstrated. At finite magnetic field, the splitting of the spin, orbital, and pseudospin Kondo resonance can be restored. For finite intradot Coulomb interaction U, there is a competition between the single-dot Kondo effect and the antiferromagnetic exchange coupling J_(AFM), resulting in the suppression of the Kondo resonance. Moreover, both the J_(AFM) and the Zeeman interactions compete, leading to need a much higher value of the magnetic field to compensate for the Kondo splitting.
机译:在具有足够的点间库仑相互作用和小的点间隧穿的平行碳纳米管双量子点中,研究了涉及自旋,轨道和伪自旋自由度的两级近藤效应的输运性质。考虑到点间库仑相关效应,并且它在形成键合和反键合状态中起重要作用。附着在铁磁导线上的近藤效应在点库伦阻塞区域观察到,具有自旋,轨道和伪自旋自由度的简并性。证明了从涉及双量子点的五倍简并的两级近藤状态到SU(4)自旋轨道近藤状态和SU(2)自旋近藤效应的交叉。在有限的磁场下,可以恢复自旋,轨道和伪自旋近藤共振的分裂。对于有限的点内库仑相互作用U,单点近藤效应与反铁磁交换耦合J_(AFM)之间存在竞争,从而导致近藤共振得到抑制。而且,J_(AFM)和塞曼相互作用都相互竞争,导致需要更高的磁场值来补偿近藤分裂。

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  • 来源
    《Journal of Applied Physics 》 |2014年第4期| 043709.1-043709.8| 共8页
  • 作者单位

    Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065, China;

    Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065, China;

    Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065, China;

    Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065, China;

    Institute of Atomic and Molecular Physics, Sichuan University, Chengdu 610065, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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