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Laser synchronized optical nuclear magnetic resonance via Larmor beat detection : imaging electronic wavefunctions in gallium arsenide device structures

机译:通过拉莫尔节拍检测激光同步光学核磁共振:在砷化镓器件结构中成像电子波函数

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摘要

NOTE: Text or symbols not renderable in plain ASCII are indicated by [...]. Abstract is included in .pdf document.ududWe have accomplished Optical Nuclear Magnetic Resonance (ONMR) experiments in an [...] heterojunction sample at ~2K with rf-optical pulse synchronization. The hyperfine coupling of the electron spin to the nuclear spins enable this spectroscopy in several ways, which are discussed herein. Moreover, the interactions experienced by nuclear spins in III-V semiconductors, in general, and the phenomena encountered when they are in the vicinity of a shallow donor or pseudo-donor, specifically, are developed. Furthermore, the most accurate calculation of spin diffusion in a spin-three-halves system to date is developed and presented using a methodology can be readily applied to any spin-larger-than-one-half system to a yield a set of coupled differential equations for a set of orthogonal polarizations. The behavior of these equations under a number of physical situations is also investigated.ududWe have captured the first ever radially resolved Knight shift images from the nuclei near a point defect in GaAs using laser synchronized ONMR. A deconvolution of these images into their constituent physical interactions has been approximately carried out using the theoretical advances developed and presented in this thesis, yielding the shape and size of the electronic orbital in which the electron is trapped, the occupancy of that electronic orbital, and the quadrupolar interactions in the vicinity of the defect, including the charge state of the defect.ududComputational approaches include both full, real-time analyses of every one of the hundreds of thousands of nuclei surrounding a defect in GaAs, modeling the time domain evolution for each individual nucleus including its Knight shift, quadrupolar interactions (both secular and nonsecular), individual optical polarization conditions, optical detection weighting, and rigorously exact rf effects, and analyses of a variety of continuous medium approximations. The only computations that fit the experimental spectra are those that calculate spin diffusion along a radial line of spins, and use this approximation to the radial profile of nuclear polarization in a continuous medium approximation. The successful interface of this spin diffusion calculation and the single nucleus calculations, leveraging their individual strengths, is clearly a desirable route to further increase computational accuracy.ud
机译:注意:用[...]表示无法用纯ASCII呈现的文本或符号。 pdf文件中已包含摘要。 ud ud我们已使用rf-光脉冲同步技术在〜2K的异质结样品中完成了光核磁共振(ONMR)实验。电子自旋与核自旋的超精细耦合使光谱能够以多种方式实现,本文将对此进行讨论。而且,一般来说,发展了III-V族半导体中核自旋所经历的相互作用,特别是当它们在浅施主或伪施主附近时遇到的现象。此外,迄今为止,在自旋三半系统中,自旋扩散的最精确计算得到了开发,并且使用一种方法可以很容易地将其应用于任何大于二分之一的自旋系统,以产生一组耦合的差分一组正交极化的方程。我们还研究了这些方程在许多物理情况下的行为。 ud ud我们已经使用激光同步ONMR从GaAs中靠近点缺陷的原子核捕获了第一个径向分辨的Knight位移图像。利用本论文开发并提出的理论进展,已将这些图像反卷积成其组成的物理相互作用,从而得出了电子被俘获的电子轨道的形状和大小,该电子轨道的占有率,以及计算方法包括对围绕GaAs缺陷的数十万个核中的每个原子核进行全面,实时的分析,并对时间进行建模每个原子核的结构域演化,包括其奈特位移,四极相互作用(世俗和非世俗的),个体的光偏振条件,光学检测权重和严格精确的rf效应,以及对各种连续介质近似值的分析。唯一适合实验光谱的计算是计算沿自旋径向线的自旋扩散,并在连续介质近似中将这种近似用于核极化的径向分布的计算。这种自旋扩散计算和单核计算的成功接口,利用它们各自的优势,显然是进一步提高计算精度的理想途径。

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    Miller Michael A.;

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  • 年度 2001
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