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Strong infrared photoluminescence in highly porous layers of large faceted Si crystalline nanoparticles

机译:大面状Si晶体纳米颗粒的高孔隙度层中的强红外光致发光

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摘要

Almost all physical processes in solids are influenced by phonons, but their effect is frequently overlooked. In this paper, we investigate the photoluminescence of large silicon nanoparticles (approximately 100 nm size, synthesized by chemical vapor deposition) in the visible to the infrared detection range. We find that upon increasing laser irradiance, an enormous photoluminescence emission band appears in the infrared. Its intensity exhibits a superlinear power dependence, increasing over four orders of magnitude in the investigated pump power range. Particles of different sizes as well as different shapes in porous layers are investigated. The results are discussed taking into account the efficient generation of phonons under high-power pumping, and the reduced capability, porosity dependent, of the silicon nanoparticles to exchange energy with each other and with the substrate. Our findings are relevant for heat management strategies in silicon.
机译:固体中几乎所有物理过程都受到声子的影响,但其作用常常被忽略。在本文中,我们研究了可见光到红外检测范围内的大型硅纳米颗粒(约100μnm大小,通过化学气相沉积合成)的光致发光。我们发现,随着激光辐照度的增加,红外中会出现一个巨大的光致发光发射带。它的强度表现出超线性的功率依赖性,在研究的泵功率范围内增加了四个数量级。研究了多孔层中不同尺寸和不同形状的颗粒。考虑到在高功率泵浦下声子的有效产生以及硅纳米颗粒相互之间以及与基板之间交换能量的能力降低(取决于孔隙率),对结果进行了讨论。我们的发现与硅的热管理策略有关。

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