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Fano Effect and Spin-Polarized Transport in a Triple-Quantum-Dot Interferometer Attached to Two Ferromagnetic Leads

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【作者】 白继元陈孔发任鹏宇李江华贺泽龙李立

【Author】 Jiyuan Bai;Kongfa Chen;Pengyu Ren;Jianghua Li;Zelong He;Li Li;School of Electronic and Information Engineering, Yangtze Normal University;College of Materials Science and Engineering, Fuzhou University;Key Lab of In-fiber Integrated Optics of Ministry of Education, College of Science, Harbin Engineering University;

【通讯作者】 陈孔发;贺泽龙;

【机构】 School of Electronic and Information Engineering Yangtze Normal UniversityCollege of Materials Science and Engineering Fuzhou UniversityKey Lab of In-fiber Integrated Optics of Ministry of Education College of Science Harbin Engineering University

【摘要】 We report the conductance and average current through a triple-quantum-dot interferometer coupled with two ferromagnetic leads using the nonequilibrium Green’s function.The results show that the interference between the resonant process and the non-resonant process leads to the formation of Fano resonance.More Fano resonances can be observed by applying a time-dependent external field.As a Zeeman magnetic field is applied, the spin-up electron transport is depressed in a certain range of electron energy levels.A spin-polarized pulse device can be realized by adjusting the spin polarization parameters of ferromagnetic leads.Moreover, the I–V characteristic curves show that under the influence of Fano resonance, the spin polarization is significantly enhanced by applying a relatively large reverse bias voltage.These results strongly suggest that the spin-polarized pulse device can be potentially applied as a spin-dependent quantum device.

【Abstract】 We report the conductance and average current through a triple-quantum-dot interferometer coupled with two ferromagnetic leads using the nonequilibrium Green’s function.The results show that the interference between the resonant process and the non-resonant process leads to the formation of Fano resonance.More Fano resonances can be observed by applying a time-dependent external field.As a Zeeman magnetic field is applied, the spin-up electron transport is depressed in a certain range of electron energy levels.A spin-polarized pulse device can be realized by adjusting the spin polarization parameters of ferromagnetic leads.Moreover, the I–V characteristic curves show that under the influence of Fano resonance, the spin polarization is significantly enhanced by applying a relatively large reverse bias voltage.These results strongly suggest that the spin-polarized pulse device can be potentially applied as a spin-dependent quantum device.

【基金】 Supported by the National Natural Science Foundation of China(Grant No.11447132);the “Chunhui Plan” Cooperative Scientific Research Project of China(Grant No.6101020101);the Science and Technology Research Program of Chongqing Education Commission of China(Grant No.KJQN201801402)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2020年12期
  • 【分类号】TH744.3;O413
  • 【下载频次】26
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