The effects of δ-doping on GMR in 2DEG modulated with two ferromagnetic stripes of center misalignment

IF 1.6 4区 物理与天体物理 Q3 PHYSICS, CONDENSED MATTER
Xingrong Zheng, Feifei Li
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Abstract

Using high precision numerical calculations with an improved transfer matrix method, we calculated the transmission probabilities, the conductance, as well as the modified giant magnetoresistance ratio with δ-doping in several GMR model devices. We also obtained the spectrum of the giant magnetoresistance ratio as a function of the Fermi energy, the dependence of the peak magnetoresistance ratio value, and its Fermi energy position on the weight and the position of the δ-doping. The results are then compared with the previous theoretical calculations and experimental data. The results shows that our results are better than previous theoretical calculations results, and pointed out that some mistakes must be made during the previous theoretical calculation for physical quantities of GMR devices in anti-parallel alignment.

In this work, using high precision numerical calculations and the improved transfer matrix method, we calculated the transmission probability, conductance and magnetoresistance ratio(MRR) with δ-doping in 2DEG modulated with two ferromagnetic stripes of center misalignment, and then obtain the dependence of the peak MRR value and its Fermi energy position on the δ-doping weight and position. Furthermore, the results are then compared with the previous theoretical calculations and experimental data. Our results are better than previous theoretical calculations results, and are completely consistent with the experimental results by comparison. This improved method is general, and it is demonstrated very fast for evaluating various spin-dependent transport properties and magnetoresistance ratio in complex hybrid magnetic-electric structures.

Abstract Image

δ掺杂对中心错位两条铁磁条纹调制的2DEG中GMR的影响
采用改进的传递矩阵法进行高精度数值计算,计算了几种GMR模型器件δ掺杂后的传输概率、电导和修正巨磁电阻比。我们还得到了巨磁电阻比作为费米能量函数的谱,峰值磁电阻比值及其费米能量位置与δ掺杂的重量和位置的关系。并将所得结果与前人的理论计算和实验数据进行了比较。结果表明,本文的计算结果优于以往的理论计算结果,并指出了以往理论计算中对GMR器件反平行对准物理量的误差。本文采用高精度数值计算和改进的传递矩阵法,计算了δ掺杂在中心不对位的两条铁磁条纹调制的2DEG中δ掺杂的透射概率、电导和磁阻比(MRR),得到了峰值MRR值及其费米能量位置与δ掺杂权重和位置的关系。并将计算结果与理论计算和实验数据进行了比较。我们的计算结果优于以往的理论计算结果,并且通过对比与实验结果完全一致。改进后的方法具有通用性,可以快速地计算复杂杂化磁电结构中各种自旋相关输运性质和磁阻比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
The European Physical Journal B
The European Physical Journal B 物理-物理:凝聚态物理
CiteScore
2.80
自引率
6.20%
发文量
184
审稿时长
5.1 months
期刊介绍: Solid State and Materials; Mesoscopic and Nanoscale Systems; Computational Methods; Statistical and Nonlinear Physics
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