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首页> 外文期刊>Journal of Applied Physics >Fano-Rashba effect in a double quantum dot Aharonov-Bohm interferometer
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Fano-Rashba effect in a double quantum dot Aharonov-Bohm interferometer

机译:双量子点Aharonov-Bohm干涉仪中的Fano-Rashba效应

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The interplay between the Fano and Rashba spin-orbit (RSO) effects in an Aharonov-Bohm (AB) interferometer containing two noninteracting quantum dots (QDs) in each of its arms is studied by employing the Green's function equation of motion. When electrons flow through the upper and lower arms of the interferometer, the RSO interaction in the QDs induces a spin-dependent phase factor in the linewidth matrix elements. By the co-action of this phase factor and the magnetic flux penetrating the AB ring, an interesting spin-dependent Fano effect will arise. It is found that the Fano line shapes of the two spin components in the conductance spectra can be tuned either synchronously or individually with the help of the structure parameters relevant to the RSO coupling strength, magnetic flux, and the structure configuration. We focus our attention on the manipulation of the swap operation of the resonances centered at the bonding and antibonding energies, spin-flip processes, and the broadening of the resonances, which might have practical applications in spintronics devices. We also find that both the broadening of the resonances and the spin polarization efficiency can be controlled in terms of the dot-lead coupling strength.
机译:通过采用格林函数运动方程,研究了在每个臂中包含两个非相互作用量子点(QD)的Aharonov-Bohm(AB)干涉仪中的Fano和Rashba自旋轨道(RSO)效应之间的相互作用。当电子流过干涉仪的上臂和下臂时,量子点中的RSO相互作用会在线宽矩阵元素中引起自旋相关的相位因子。通过该相位因子和穿透AB环的磁通量的共同作用,将产生有趣的自旋相关的Fano效应。可以发现,借助于与RSO耦合强度,磁通量和结构配置有关的结构参数,可以同步地或分别地调谐电导谱中两个自旋分量的Fano线形。我们将注意力集中在以键合和反键能,自旋翻转过程以及共振的扩展为中心的共振交换操作的操纵上,这可能在自旋电子器件中具有实际应用。我们还发现,可以根据点引线耦合强度来控制共振的加宽和自旋极化效率。

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