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Analytical model of spin filtering effect and its experimental verification in a forward-biased iron-metal-Al2O3-n-type GaAs tunneling structure under optical spin orientation

机译:自旋取向下正向铁金属Al2O3-n型GaAs隧穿结构中自旋滤波效应的解析模型及其实验验证

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摘要

An analytical model for the spin filtering transport in a ferromagnetic-metal - Al2O3 - n-type semiconductor tunneling structure has been developed, and demonstrated that the ratio of the helicity-modulated photo-response to the chopped one is proportional to the sum of the relative asymmetry in conductance of two opposite spin-polarized tunneling channels and the MCD effect of the ferromagnetic metal film. The performed measurement in an iron-metal/Al2O3-type GaAs tunneling structure under the optical spin orientation has verified that all the aspects of the experimental results are very well in accordance with our model in the regime of the spin filtering. After the MCD effect of the iron film is calibrated by an independent measurement, the physical quantity of Delta G(t)/G(t) (Delta G(t) = G(t)(up arrow) - G(t)(down arrow) is the difference of the conductance between two opposite spin tunneling channels, G(t) =( G(t)(up arrow) + G(t)(down arrow))/2 the averaged tunneling conductance), which concerns us most, can be determined quantitatively with a high sensitivity in the framework of our analytical model.
机译:建立了铁磁金属-Al2O3-n型半导体隧道结构中自旋滤波输运的解析模型,并证明了螺旋度调制的光响应与斩波的光响应的比例与线性的和成正比。两个相对的自旋极化隧穿通道的电导率的相对不对称性和铁磁金属膜的MCD效应。在铁-金属/ Al2O3 / n型GaAs隧穿结构中,在光学自旋取向下进行的测量已证明,在自旋滤波方面,实验结果的各个方面均与我们的模型非常吻合。通过独立测量校准铁膜的MCD效应后,Delta G(t)/ G(t)的物理量(Delta G(t)= G(t)(向上箭头)-G(t)(向下箭头)是两个相对的自旋隧穿通道之间的电导差G(t)=(G(t)(向上箭头)+ G(t)(向下箭头))/ 2平均隧道隧穿电导)我们大多数人可以在我们的分析模型的框架内以高灵敏度定量确定。

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