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镍4分子晶体管中的磁量子相干效应。

Magnetic quantum coherence effect in Ni4 molecular transistors.

作者信息

González Gabriel, Leuenberger Michael N

机构信息

Departamento de Matemáticas y Física, Instituto Tecnológico y de Estudios Superiores de Occidente, Periférico Sur Manuel Gómez Morín 8585 CP 45604, Tlaquepaque, Jal., Mexico.

出版信息

J Phys Condens Matter. 2014 Jul 9;26(27):275302. doi: 10.1088/0953-8984/26/27/275302. Epub 2014 Jun 11.

Abstract

We present a theoretical study of electron transport in Ni4 molecular transistors in the presence of Zeeman spin splitting and magnetic quantum coherence (MQC). The Zeeman interaction is extended along the leads which produces gaps in the energy spectrum which allow electron transport with spin polarized along a certain direction. We show that the coherent states in resonance with the spin up or down states in the leads induces an effective coupling between localized spin states and continuum spin states in the single molecule magnet and leads, respectively. We investigate the conductance at zero temperature as a function of the applied bias and magnetic field by means of the Landauer formula, and show that the MQC is responsible for the appearence of resonances. Accordingly, we name them MQC resonances.

摘要

我们对存在塞曼自旋分裂和磁量子相干(MQC)的Ni4分子晶体管中的电子输运进行了理论研究。塞曼相互作用沿引线扩展,在能谱中产生能隙,使得电子能够沿特定方向自旋极化传输。我们表明,与引线中自旋向上或向下状态共振的相干态分别在单分子磁体和引线中的局域自旋态与连续自旋态之间诱导出有效耦合。我们通过朗道尔公式研究了零温度下的电导作为外加偏压和磁场的函数,并表明MQC是共振出现的原因。因此,我们将它们命名为MQC共振。

相似文献

1
Magnetic quantum coherence effect in Ni4 molecular transistors.镍4分子晶体管中的磁量子相干效应。
J Phys Condens Matter. 2014 Jul 9;26(27):275302. doi: 10.1088/0953-8984/26/27/275302. Epub 2014 Jun 11.
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