铁磁体/共振隧道二极管异质结构中的自旋注入

Jin Bao, Fang Wan, Yu Wang, Xiaoguang Xu, Yong Jiang
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引用次数: 0

摘要

研究了铁磁体(FM)/绝缘体(I)/谐振隧道二极管(RTD)异质结构的自旋输运特性。利用Schrödinger波动方程计算了多层异质结构的透射系数和自旋极化。采用艾里函数形式化方法求解该方程。基于传递矩阵法,确定了结构的透射率是飞米能量和其他参数的函数。结果表明,该结构诱导的自旋极化随调频层费米能量的增加而振荡。当RTD的厚度减小时,谐振峰变宽。在异质结构中,自旋极化高达40%,可以很容易地通过外部偏置电压来控制。
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Spin injection in a ferromagnet/resonant tunneling diode heterostructure

The spin transport property of a ferromagnet (FM)/insulator (I)/resonant tunneling diode (RTD) heterostructure was studied. The transmission coefficient and spin polarization in a multilayered heterostructure was calculated by a Schrödinger wave equation. An Airy function formalism approach was used to solve this equation. Based on the transfer matrix approach, the transmittivity of the structure was determined as a function of the Feimi energy and other parameters. The result shows that the spin polarization induced by the structure oscillates with the increasing Fermi energy of the FM layer. While the thickness of the RTD is reduced, the resonant peaks become broad. In the heterostructure, the spin polarization reaches as high as 40% and can be easily controlled by the external bias voltage.

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