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发光 3C-SiC 纳米晶膜中的纵光学声子-等离子体耦合。

Longitudinal optical phonon-plasmon coupling in luminescent 3C-SiC nanocrystal films.

机构信息

Nanjing National Laboratory of Microstructures and Department of Physics, Nanjing University, Nanjing 210093, China.

出版信息

Opt Lett. 2010 Dec 1;35(23):4024-6. doi: 10.1364/OL.35.004024.

Abstract

Glycerol-passivated 3C-SiC nanocrystal (NC) solid films with tunable blue photoluminescence show abnormal longitudinal optical (LO) phonon behavior. As the NC size increases, the LO phonon intensity increases in the Raman spectra of the solid films and is even larger than that of the transverse optical mode. The Raman spectra cannot be fitted by using only the phonon confinement model. When further considering the coupling between the LO phonon and plasmon induced by the surface deformation potential in the glycerol layer, good agreement is achieved between the experiments and theory. This indicates that the coupled LO phonon-plasmon effect arising from the surface bonding structure plays a crucial role in the modified LO phonon behavior.

摘要

经甘油钝化的 3C-SiC 纳米晶(NC)固态薄膜具有可调谐的蓝光光致发光,表现出异常的纵光学(LO)声子行为。随着 NC 尺寸的增加,固态薄膜的拉曼光谱中 LO 声子强度增加,甚至超过了横光学模式的强度。仅使用声子限制模型无法对拉曼光谱进行拟合。当进一步考虑甘油层中表面变形势引起的 LO 声子与等离子体之间的耦合时,实验结果与理论吻合较好。这表明,源于表面键合结构的耦合 LO 声子-等离子体效应在修饰的 LO 声子行为中起着关键作用。

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