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Accounting for the Local Field When Determining the Dielectric Loss Spectra of Metals in the Region of the Frequencies of Volume Surface and Localized Plasmon Oscillations

机译:确定体积表面和局部等离激元振荡频率区域中的金属的介电损耗谱时应考虑局部场

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摘要

The optical constant of bulk metal is used to determine the dispersion of the local field under one-dimensional (1D), two-dimensional (2D) and three-dimensional (3D) confinement. 3D confinement, expressed as , corresponds to the dielectric loss spectra of spherical particles with a diameter, , much less than the wavelength of the beam used to measure the spectrum ( λ). Excellent agreement with the results of Mie theory and experimental data for solid colloids within alkali halide crystals was observed. The function expressed as allows the measurement of spectral micro-characteristics in the frequency range of the longitudinal collective motion of the free electrons. This corresponds to the spectrum of dielectric losses of bulk plasma oscillations. The function describes the spectra of the dielectric losses of surface plasma oscillations in thin metal films. It is shown that the peak positions of , and spectra for simple metals, viz. alkali metals as well as Al, Be, Mg, Ga, In, Sn and Si, are in agreement with experimental results from electron-energy-loss spectroscopy and various optical techniques.
机译:大块金属的光学常数用于确定一维(1D),二维(2D)和三维(3D)约束下的局部场色散。 3D限制表示为,它对应于直径为的球形颗粒的介电损耗光谱,该直径远小于用于测量光谱的光束的波长(λ)。观察到与Mie理论的结果和碱金属卤化物晶体中固体胶体的实验数据非常吻合。表示为的函数允许在自由电子的纵向集体运动的频率范围内测量光谱的微特征。这对应于整体等离子体振荡的介电损耗谱。该函数描述了金属薄膜中表面等离子体振荡的介电损耗谱。结果表明,的峰位置和简单金属的光谱即。碱金属以及Al,Be,Mg,Ga,In,Sn和Si与电子能量损失光谱法和各种光学技术的实验结果一致。

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