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Spin-dependent transport through an interacting quantum dot system

Spin-dependent transport through an interacting quantum dot system
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摘要 Using an equation of motion technique, we report on a theoretical analysis of transport characteristics of a spin- valve system formed by a quantum dot coupled to ferromagnetic leads, whose magnetic moments are oriented at an angle θ with respect to each other, and a mesoscopic ring by the Anderson Hamiltonian. We analyse the density of states of this system, and our results reveal that the density of states show some noticeable characteristics depending on the relative angle θ of magnetic moment M, and the spin-polarised strength P in ferromagnetic leads, and also the magnetic flux Φ and the number of lattice sites NR in the mesoscopic ring. These effects might have some potential applications in spintronics. Using an equation of motion technique, we report on a theoretical analysis of transport characteristics of a spin- valve system formed by a quantum dot coupled to ferromagnetic leads, whose magnetic moments are oriented at an angle θ with respect to each other, and a mesoscopic ring by the Anderson Hamiltonian. We analyse the density of states of this system, and our results reveal that the density of states show some noticeable characteristics depending on the relative angle θ of magnetic moment M, and the spin-polarised strength P in ferromagnetic leads, and also the magnetic flux Φ and the number of lattice sites NR in the mesoscopic ring. These effects might have some potential applications in spintronics.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第7期506-512,共7页 中国物理B(英文版)
基金 supported by the Youth Research Fund of Southwest Petroleum University
关键词 Kondo effect spin-polarised transport density of states Kondo effect, spin-polarised transport, density of states
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