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Mesoscopic spin-flip transport through a hybrid system with a single molecular dot system applied with ac magnetic fields
Authors:Qiao Chen  Jin LiuZhi-yong Wang
Affiliation:a Department of Maths and Physics, Hunan Institute of Engineering, Xiangtan 411104, China
b Institute of Theoretical Physics, Chinese Academy of Science, Beijing 100190, China
c School of Optoelectronic Information, Chongqing University of Technology, Chongqing 400054, China
Abstract:We have investigated the current for the system of vibrating quantum dot irradiated with a rotating magnetic field and an oscillating magnetic field by nonequilibrium Green's function. The rotating magnetic field rotates with the angular frequency ωr around the z-axis with the tilt angle ?, and the time-oscillating magnetic field is located in the z-axis with the angular frequency ω. Different behaviors have been shown in the presence of electron-phonon interaction (EPI) which plays a significant role in the transport. The current displays asymmetric behavior as the source-drain bias eV=0, novel side peaks or shoulders can be found due to the phonon absorption and emission procedure, and the negative differential resistance becomes stronger as the parameter g increases. Furthermore, the strong EPI also destroys the quasiperiodic oscillations of current in the region μ0B1>2.5Δ. The electron transport properties are also significantly influenced by the linewidth function Γ.
Keywords:Molecular quantum dot   Spin-flip effect   Electron-phonon interaction   Nonequilibrium Green's function
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