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Spin transition rates in nanowire superlattices: Rashba spin-orbit coupling effects

机译:纳米线超晶格中的自旋跃迁速率:Rashba自旋轨道耦合效应

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摘要

We investigate the influence of Rashba spin-orbit coupling in a parabolic nanowire modulated by longitudinal periodic potential. The modulation potential can be obtained from realistically grown superlattices (SLs). Our study shows that the Rashba spin-orbit interaction induces the level crossing point in the parabolic nanowire SLs. We estimate large anticrossing width (approximately 117 eV) between singlet-triplet states. We study the phonon and electromagnetic field mediated spin transition rates in the parabolic nanowire SLs. We report that the phonon mediated spin transition rate is several order of magnitude larger than the electromagnetic field mediated spin transition rate. Based on the Feynman disentangling technique, we find the exact spin transition probability. For the case wave vector k = 0, we report that the transition probability can be tuned in the form of resonance at fixed time interval. For the general case (k ≠ 0), we solve the Riccati equation and find that the arbitrary values of k induces the damping in the transition probability. At large value of Rashba spin-orbit coupling coefficients for (k ≠ 0), spin transition probability freezes.
机译:我们研究了由纵向周期性电势调制的抛物线形纳米线中Rashba自旋轨道耦合的影响。调制电位可以从实际增长的超晶格(SL)获得。我们的研究表明,Rashba自旋轨道相互作用在抛物线形纳米线中诱导了水平交叉点。我们估计单重态-三重态之间的抗交叉宽度较大(约117 eV)。我们研究了抛物线形纳米线中声子和电磁场介导的自旋跃迁速率。我们报告说,声子介导的自旋跃迁速率比电磁场介导的自旋跃迁速率大几个数量级。基于费曼解缠技术,我们找到了精确的自旋跃迁几率。对于波矢量k = 0的情况,我们报告可以在固定的时间间隔以共振的形式调整跃迁概率。对于一般情况(k≠0),我们求解了Riccati方程,发现k的任意值会引起过渡概率的衰减。对于(k≠0),当Rashba自旋轨道耦合系数较大时,自旋跃迁几率会冻结。

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