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Modeling Optically Pumped NMR and Spin Polarization in GaAs/AlGaAs Quantum Wells

机译:在GaAs / AlGaAs量子阱中模拟光泵浦NMR和自旋极化

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Optically-pumped nuclear magnetic resonance (OPNMR) spectroscopy is an emerging technique to probe electronic and nuclear spin properties in bulk and quantum well semiconductors. In OPNMR, one uses optical pumping with light to create spin-polarized electrons in a semiconductor. The electron spin can be transferred to the nuclear spin bath through the Fermi contact hyperfine interaction which can then be detected by conventional NMR. The resulting NMR signal can be enhanced four to five orders of magnitude or more over the thermal equilibrium signal. In previous work, we studied OPNMR in bulk GaAs where we investigated the strength of the OPNMR. signal as a function of the pump laser frequency. This allowed us to study the spin-split valence band. Here we report on OPNMR studies in GaAs/AlGaAs quantum wells. We focus on theoretical calculations for the average electron spin polarization at different photon energies for different values of external magnetic field in both unstrained and strained quantum wells. Our calculations allow us to identify the Landau level transitions which are responsible for the peaks in the photon energy dependence of the OPNMR signal intensity. The calculations are based on the 8- band Pidgeon-Brown model generalized to include the effects of the quantum confinement potential as well as pseudomorphic strain at the interfaces. Optical properties are calculated within the golden rule approximation. Detailed comparison to experiment allows one to accurately determine valence band spin splitting in the quantum wells including the effects of strain.
机译:光泵核磁共振(OPNMR)光谱技术是一种新兴的技术,可用于探测体和量子阱半导体中的电子和核自旋特性。在OPNMR中,人们利用光的光泵浦在半导体中产生自旋极化电子。可以通过费米接触超精细相互作用将电子自旋转移到核自旋浴中,然后可以通过常规NMR进行检测。所产生的NMR信号可以比热平衡信号增强4到5个数量级或更多。在先前的工作中,我们研究了本体GaAs中的OPNMR,在此我们研究了OPNMR的强度。信号作为泵浦激光频率的函数。这使我们能够研究自旋分裂价带。在这里,我们报道了在GaAs / AlGaAs量子阱中进行OPNMR研究的情况。我们专注于在无应变和应变量子阱中针对不同外部磁场值在不同光子能量下的平均电子自旋极化的理论计算。我们的计算使我们能够确定Landau能级跃迁,该跃迁是导致OPNMR信号强度的光子能量依赖性峰值的原因。该计算基于8波段Pidgeon-Brown模型,该模型被概括为包括量子限制势以及界面处的拟晶应变的影响。光学性质是在黄金法则近似值内计算的。与实验的详细比较使人们可以准确地确定量子阱中的价带自旋分裂,包括应变的影响。

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