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Size-dependent visible absorption and fast photoluminescence decay dynamics from freestanding strained silicon nanocrystals

机译:独立应变硅纳米晶体的尺寸依赖性可见吸收和快速光致发光衰减动力学

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摘要

In this article, we report on the visible absorption, photoluminescence (PL), and fast PL decay dynamics from freestanding Si nanocrystals (NCs) that are anisotropically strained. Direct evidence of strain-induced dislocations is shown from high-resolution transmission electron microscopy images. Si NCs with sizes in the range of approximately 5-40 nm show size-dependent visible absorption in the range of 575-722 nm, while NCs of average size <10 nm exhibit strong PL emission at 580-585 nm. The PL decay shows an exponential decay in the nanosecond time scale. The Raman scattering studies show non-monotonic shift of the TO phonon modes as a function of size because of competing effect of strain and phonon confinement. Our studies rule out the influence of defects in the PL emission, and we propose that owing to the combined effect of strain and quantum confinement, the strained Si NCs exhibit direct band gap-like behavior.
机译:在本文中,我们报告了各向异性应变的独立式Si纳米晶体(NC)的可见吸收,光致发光(PL)和快速PL衰减动力学。应变引起的位错的直接证据从高分辨率透射电子显微镜图像中显示。尺寸在大约5-40 nm范围内的Si NCs在575-722 nm范围内显示出与尺寸有关的可见光吸收,而平均尺寸<10 nm的NCs在580-585 nm处显示出较强的PL发射。 PL衰减显示了纳秒级的指数衰减。拉曼散射研究表明,由于应变和声子约束的竞争效应,TO声子模的非单调位移是大小的函数。我们的研究排除了PL发射中缺陷的影响,并且我们提出,由于应变和量子约束的共同作用,应变Si NCs表现出直接的带隙行为。

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