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Mesoscopic Fano effect modulated by Rashba spin–orbit coupling and external magnetic field

机译:由Rashba自旋轨道耦合和外部磁场调制的介观Fano效应

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摘要

By employing non-equilibrium Green's function method, the mesoscopic Fano effect modulated by Rashba spin–orbit (SO) coupling and external magnetic field has been elucidated for electron transport through a hybrid system composed of a quantum dot (QD) and an Aharonov–Bohm (AB) ring. The results show that the orientation of the Fano line shape is modulated by the Rashba spin–orbit interaction kRL variation, which reveals that the Fano parameter q will be extended to a complex number, although the system maintains time-reversal symmetry (TRS) under the Rashba SO interaction. Furthermore, it is shown that the modulation of the external magnetic field, which is applied not only inside the frame, but also on the QD, leads to the Fano resonance split due to Zeeman effect, which indicates that the hybrid is an ideal candidate for the spin readout device.
机译:通过采用非平衡格林函数方法,已经阐明了由Rashba自旋轨道(SO)耦合和外部磁场调制的介观Fano效应,用于通过量子点(QD)和Aharonov-Bohm组成的混合系统进行电子传输。 (AB)响。结果表明,Fano线形的取向受Rashba自旋-轨道相互作用kRL变化的调节,这表明Fano参数q将扩展为复数,尽管系统在以下条件下保持时间反转对称性(TRS) Rashba SO互动。此外,还表明,不仅在框架内部而且在QD上施加的外部磁场的调制都会由于塞曼效应而导致Fano共振分裂,这表明该杂合体是理想的候选对象。自旋读出设备。

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