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Spin-Polarized Transport through a Quantum Dot Coupled to Ferromagnetic Leads and a Mesoscopic Ring

Spin-Polarized Transport through a Quantum Dot Coupled to Ferromagnetic Leads and a Mesoscopic Ring
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摘要 Using an equation of motion technique, we investigate the spin-polarized transport through a quantum dot coupled to ferromagnetic leads and a mesoseopie ring by the Anderson Hamiltonian. We analyze the transmission probability of this system in both the equilibrium and nonequilibrium cases, and our results reveal that the transport properties show some noticeable characteristics depending upon the spin-polarized strength p, the magnetic flux Ф and the number of lattice sites NR in the mesoseopic ring. These effects might have some potential applications in spintronics.
作者 黄睿 吴绍全
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2010年第2期355-360,共6页 理论物理通讯(英文版)
基金 Supported by the Scientific Research Funds of Education Department of Sichuan Province under Grant No. 2006A069 the Major Basic Research Project of Sichuan Province under Grant No. 2006J13-155
关键词 Kondo effect spin-polarized transport transmission probability 自旋极化输运 耦合量子点 传输特性 铁磁 介观环 信息 自旋电子学 极化强度
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