超小型铁磁隧道结中库仑阻塞和高阶隧穿效应对磁阻的影响

S. Iwabuchi, T. Tanamoto, R. Kitawaki
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引用次数: 0

摘要

基于费曼路径积分方法研究了超小型铁磁隧道结的库仑阻塞和负磁阻。结果表明,在库仑阻塞状态下,磁电阻的变化显著增强。这是由于高阶隧穿过程引起的非线性电流-电压特性,因为负磁阻往往使库仑封锁不稳定。所得结果在质量上与最近的实验结果一致。并简要讨论了超小型铁磁双结中的库仑阻塞和磁阻。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coulomb blockade and higher order tunneling effect on magnetoresistance in ultrasmall ferromagnetic tunnel junctions
Coulomb blockade and negative magnetoresistance of ultrasmall ferromagnetic tunnel junctions are studied based on the Feynman path integral approach. It is shown that the change in magnetoresistance is considerably enhanced in the Coulomb blockade regime. This is due to the nonlinear current-voltage characteristics caused by the higher order tunneling processes which set in since negative magnetoresistance tends to make Coulomb blockade unstable. Results obtained are qualitatively in good agreement with recent experimental findings. Coulomb blockade and the magnetoresistance in ultrasmall ferromagnetic double junction are also discussed briefly.
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