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Raman scattering in cluster-deposited nanogranular silicon films

机译:团簇沉积纳米颗粒硅膜中的拉曼散射

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摘要

We study nanograin size confinement effects, and the effect of the increase of local temperature on the first-order Raman spectrum in silicon nanogranular films obtained by cluster deposition. The local temperature was monitored by measuring the Stokes/antiStokes peak ratio with the laser power up to similar to20 kW/cm(2). We find large energy shifts, up to 30 cm(-1), and broadenings, up to 20 cm(-1), of the Raman-active mode, which we attribute to both laser heating and confinement effects. The phonon softening and phonon linewidth are calculated using a phenomenological model which takes into account disorder effects through the breakdown of the k = 0 Raman-scattering selection rule, and also anharmonicity, which is incorporated through the three- and four- phonon decay processes. Very good agreement with experimental data is obtained for calculated spectra with nanograin sizes of about 10 nm, and with an increase in the anisotropy constants with respect to those of bulk silicon.
机译:我们研究了纳米颗粒尺寸限制效应,以及局部温度升高对通过团簇沉积获得的硅纳米颗粒薄膜中一阶拉曼光谱的影响。通过测量斯托克斯/反斯托克斯峰值比来监视局部温度,同时激光功率最高可达到20 kW / cm(2)。我们发现拉曼激活模式的能量转换最大,可达30 cm(-1),展宽高达20 cm(-1),这归因于激光加热和限制效应。声子软化和声子线宽是使用现象学模型计算的,该模型考虑了通过k = 0拉曼散射选择规则的分解所产生的无序效应,以及通过三声子和四声子衰变过程纳入的非谐性。对于具有约10nm的纳米颗粒尺寸并且相对于体硅的各向异性常数增加的计算的光谱,获得了与实验数据的非常好的一致性。

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