Nonlinear Optical Properties of Quantum-Confined CdSe Microcrystallites

S. Park, R. Morgan, Y. Z. Hu, M. Lindberg, S. Koch, N. Peyghambarian
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引用次数: 69

Abstract

Lately, quantum confinement effects in semiconductor microstructures have been studied because of their interesting physics and possible nonlinear optical device applications.1-2 The basic optical properties of quantum dots (QDs), which exhibit 3D-confinement effects, have recently been discussed theoretically.1 In this paper, we report a comprehensive experimental study of the steady-state nonlinear optical properties of specially-prepared quantum-confined CdSe microcrystallites suspended in a transparent borosilicate glass matrix.2 Three samples were investigated. The average crystallite diameters of these samples were measured using transmission electron microscopy to be 30 Å, 44 Å, and 79 Å, respectively.2 For bulk CdSe, the exciton Bohr radius (aex) is ≅ 56 Å therefore, our samples fall within the so-called intermediate confinement regime (ah< R
量子限制CdSe微晶的非线性光学性质
近年来,半导体微结构中的量子约束效应因其有趣的物理性质和可能的非线性光学器件应用而受到研究。表现出三维约束效应的量子点(QDs)的基本光学性质最近在理论上得到了讨论在本文中,我们报道了悬浮在透明硼硅酸盐玻璃基体中的特殊制备的量子限制CdSe微晶的稳态非线性光学性质的综合实验研究对三个样本进行了调查。透射电镜测得样品的平均晶径分别为30 Å、44 Å和79 Å对于块体CdSe,激子玻尔半径(aex)为= 56 Å,因此,我们的样品处于所谓的中间约束区(ah< R)
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