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OPTICAL PROPERTIES OF SEMICONDUCTOR-METAL COMPOSITE THIN FILMS IN THE INFRARED REGION

机译:红外区半金属复合薄膜的光学性能

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Germanium:silver (Ge:Ag) composite thin films having different concentrations of Ag, ranging from 7% to 40%, have been prepared by de cosputtering of Ge and Ag. The films' surface morphology and optical properties have been characterized using transmission electron microscopy and infrared spectrophotometry. It is seen that, although the films that contain lower concentrations of Ag have islandlike morphology (i.e., Ag particles distributed in a Ge matrix), the higher metallic concentration films tend to have a symmetric distribution of Ag and Ge. The optical constants (i.e., refractive index n and absorption index k) derived from the measured optical properties show a semiconductor behavior even as high as 40% of Ag concentration, beyond which the metallic properties dominate over the entire infrared spectrum. Comparison of the n and k data with the two well-known effective medium theories, namely, the Maxwell-Garnett theory and the Bruggeman theory, shows that both theories have limited scope in predicting the optical properties of semiconductor-metal composite films in the infrared region. However, an empirical polynomial equation can simulate the experimental data at all wave numbers of the IR spectrum. [References: 30]
机译:通过对Ge和Ag进行解溅射制备了具有不同Ag浓度范围为7%至40%的锗:银(Ge:Ag)复合薄膜。使用透射电子显微镜和红外分光光度法对薄膜的表面形貌和光学性能进行了表征。可以看出,尽管含有较低浓度Ag的膜具有岛状形态(即,Ag颗粒分布在Ge基质中),但是较高金属浓度的膜倾向于具有对称的Ag和Ge分布。由测得的光学性质得出的光学常数(即,折射率n和吸收系数k)显示出甚至高达Ag浓度的40%的半导体性能,超过该浓度,金属性能在整个红外光谱中占主导。将n和k数据与两种著名的有效介质理论(麦克斯韦-加纳特理论和Bruggeman理论)进行比较,发现这两种理论在预测半导体-金属复合膜在红外光谱中的光学特性方面的范围有限。地区。但是,经验多项式方程可以模拟所有红外光谱波数的实验数据。 [参考:30]

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