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NONEQUILIBRIUM ELECTRON TRANSPORT THROUGH NANOSTRUCTURES: CORRELATION EFFECTS

机译:非纳米结构非QuibiRibium Electron Transporture:相关效果

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We consider electron transport through a quantum dot in the Coulomb blockade regime, when the dot has a total spin 1/2. The low energy physics of this system is modeled by a Kondo-type Hamiltonian describing spin-dependent tunneling and exchange interaction of the electron spins in the leads and the local spin. We show that in the regime of large transport voltage V and magnetic field B with max(V, B) T_K, where T_K is the Kondo temperature, renormalized perturbation theory is valid. Physical quantities such as the differential conductance G and the local magnetization M may be calculated in a controlled way by summing the leading logarithmic terms in each order of perturbation theory. We develop a poor man's scaling renormaliza.tion group treatment for frequency dependent coupling functions, which allows one to calculate G and M to lea-ding order in 1/ln[(V, B)/T_K].
机译:当点具有总旋转1/2时,我们考虑通过库仑封锁制度中的量子点的电子传输。该系统的低能量物理由Kondo型Hamiltonian建模,描述了引线和局部旋转中电子旋转的自旋依赖性隧道和交换相互作用。我们表明,在大型运输电压V和磁场B的制度中,具有MAX(v,b) t_k,其中t_k是kondo温度,重字化扰动理论是有效的。诸如差分电导G和局部磁化M的物理量可以通过在扰动理论的每个顺序中求和领先的对数术语来以受控方式计算。我们开发了一个较差的人缩放Renormaliza.tion组处理,用于频率相关耦合功能,它允许一个人在1 / Ln [(v,b)/ t_k]中计算g和m到Lea-ding命令。

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