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Time-resolved photoluminescence spectra of strong visible light-emitting SiC nanocrystalline films on Si deposited by electron-cyclotron-resonance chemical-vapor deposition

机译:通过电子回旋共振化学气相沉积在si上沉积强可见光发射siC纳米晶薄膜的时间分辨光致发光光谱

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摘要

SiC nanocrystalline films on Si substrates deposited using advanced electron-cyclotron-resonance chemical-vapor deposition exhibit intense visible light emission at room temperature under laser excitation. Continuous-wave and time-resolved photoluminescence measurements for these SiC films were carried out at room temperature. The photon energy of the dominant emission peaks is higher than the band gap of cubic SiC. Room-temperature optical absorption measurements show a clear blueshift of the band gap of the samples with a decrease of the average size of the nanoclusters, indicating an expected quantum-confinement effect. However, the emission spectra are basically independent of the size. Temporal evolution of the dominant emissions exhibits double-exponential decay processes. Two distinct decay times of ∼200 ps and ∼1 ns were identified, which are at least two orders of magnitude faster than that of the bound-exciton transitions in bulk 3C-SiC at low temperature. Strong light emissions and short decay times strongly suggest that the radiative recombinations may be from some direct transitions such as self-trapped excitons on the surface of the nanoclusters. © 2000 American Institute of Physics.
机译:使用先进的电子回旋共振化学气相沉积技术沉积在Si衬底上的SiC纳米晶膜在室温下在激光激发下表现出强烈的可见光发射。这些SiC薄膜的连续波和时间分辨光致发光测试是在室温下进行的。主导发射峰的光子能量高于立方SiC的带隙。室温光吸收测量结果显示出样品带隙的明显蓝移,纳米团簇的平均尺寸减小,表明了预期的量子约束效应。但是,发射光谱基本上与尺寸无关。主导排放的时间演变表现出双指数衰减过程。确定了两个不同的衰减时间〜200 ps和〜1 ns,这比3C-SiC本体在低温下的束缚激子跃迁至少快两个数量级。强光发射和短衰减时间强烈表明辐射复合可能来自某些直接跃迁,例如纳米团簇表面上的自陷激子。 ©2000美国物理研究所。

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