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首页> 外文期刊>Physical review >Spin-charge conversion in a multiterminal Aharonov-Casher ring coupled to precessing ferromagnets: A charge-conserving Floquet nonequilibrium Green function approach
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Spin-charge conversion in a multiterminal Aharonov-Casher ring coupled to precessing ferromagnets: A charge-conserving Floquet nonequilibrium Green function approach

机译:耦合进动铁磁体的多端Aharonov-Casher环中的自旋电荷转换:电荷保持Floquet非平衡Green函数方法

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摘要

We derive a nonperturbative solution to the Floquet nonequilibrium Green function (Floquet NEGF) describing open quantum systems periodically driven by an external field of arbitrary strength of frequency. By adopting the reduced-zone scheme, we obtain expressions rendering conserved charge currents for any given maximum number of photons, distinguishable from other existing Floquet-NEGF-based expressions where, less feasibly, an infinite number of photons needs to be taken into account to ensure the conservation. To justify our derived formalism and to investigate spin-charge conversions by spin-orbit coupling (SOC), we consider the spin-driven setups as reciprocal to the electric-driven setups in Souma and Nikolic [Phys. Rev. B 70, 195346 (2004); Phys. Rev. Lett. 94, 106602 (2005)]. In our setups, pure spin currents are driven by the magnetization dynamics of a precessing ferromagnetic (FM) island and then are pumped into the adjacent two- or four-terminal mesoscopic Aharonov-Casher (AC) ring of Rashba SOC where spin-charge conversions take place. Our spin-driven results show reciprocal features that excellently agree with the findings in the electric-driven setups mentioned above. We propose two types of symmetry operations, under which the AC ring Hamiltonian is invariant, to argue the relations of the pumped/converted currents in the leads within the same or between different pumping configurations. The symmetry arguments are independent of the ring width and the number of open channels in the leads, terminals, and precessing FM islands. In particular, net pure in-plane spin currents and pure spin currents can be generated in the leads for certain setups of two terminals and two precessing FM islands with the current magnitude and polarization direction tunable by the pumping configuration, gate voltage covering the two-terminal AC ring in between the FM islands.%045402-1
机译:我们推导了Floquet非平衡格林函数(Floquet NEGF)的非摄动解,该函数描述了由任意频率强度的外部场周期性驱动的开放量子系统。通过采用减小区域的方案,我们获得了在任何给定最大光子数下呈现守恒电荷电流的表达式,这与其他现有的基于Floquet-NEGF的表达式有所区别,在后者中,不太可能需要考虑无限多个光子,确保保护。为证明我们派生的形式主义并研究通过自旋轨道耦合(SOC)进行的自旋电荷转换,我们认为自旋驱动设置与Souma和Nikolic [Phys。 B 70,195346(2004);物理牧师94,106602(2005)]。在我们的设置中,纯自旋电流由进动铁磁(FM)岛的磁化动力学驱动,然后被泵入Rashba SOC的相邻两端子或四端子介观Aharonov-Casher(AC)环中,在此自旋电荷转换发生。我们的自旋驱动结果显示了与上述电动驱动设置中的发现非常一致的互惠特征。我们提出了两种对称操作,在这些对称操作下,AC环哈密顿量不变,以论证在相同或不同抽运配置下的导线中的抽运/转换电流之间的关系。对称性参数与环的宽度以及导线,端子和进动FM孤岛中开放通道的数量无关。特别是,对于两个端子和两个进动FM岛的某些设置,可以在引线中生成纯净的平面内自旋电流和纯自旋电流,其电流大小和极化方向可通过泵浦配置进行调节,栅极电压覆盖两个FM孤岛之间的终端AC环。%045402-1

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