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溅射氮化锆薄膜的光学常数及德鲁德分析

Optical constants and Drude analysis of sputtered zirconium nitride films.

作者信息

Veszelei M, Andersson K, Ribbing C G, Järrendahl K, Arwin H

出版信息

Appl Opt. 1994 Apr 1;33(10):1993-2001. doi: 10.1364/AO.33.001993.

Abstract

Opaque and semitransparent dc magnetron-sputtered ZrN films on glass and silicon have been optically characterized with spectral reflectance measurements and ellipsometry. High rate sputtered ZrN has good optical selectivity, i.e., higher than 90% infrared reflectance and a pronounced reflectance step in the visible to a reflectance minimum of less than 10% at 350 nm. The results are comparable with those obtained for single crystalline samples and those prepared by chemical vapor deposition. The complex optical constant (N = n v ik) for opaque films has been determined in the 0.23-25-µm wavelength range with Kramers-Kronig integration of bulk reflectance combined with oblique incidence reflectance for p-polarized light. A variable angle of incidence spectroscopic ellipsometer has been used for determination of the optical constants in the 0.28-1.0-µm wavelength region. The results of the two methods show excellent agreement. The results indicate that ZrN is free electronlike and the Drude model can be applied. The best opaque films had Drude plasma energies (ħω(p) between 6.6 and 7.5 eV and relaxation energies (ħ/τ) between 0.29 and 0.36 eV. Ellipsometer data for the semitransparent films show that the refractive index (n) in the visible increases with decreasing film thickness whereas the extinction coefficient (k) is essentially unchanged. The optical properties are improved by deposition upon a heated substrate.

摘要

通过光谱反射率测量和椭偏测量对玻璃和硅上不透明及半透明的直流磁控溅射ZrN薄膜进行了光学表征。高速溅射的ZrN具有良好的光学选择性,即红外反射率高于90%,且在可见光范围内有明显的反射率阶跃,在350nm处反射率最小值小于10%。结果与单晶样品以及化学气相沉积制备的样品所得到的结果相当。对于不透明薄膜,在0.23 - 25μm波长范围内,通过对体反射率进行克喇末 - 克朗尼格积分并结合p偏振光的斜入射反射率,确定了复光学常数(N = n + ik)。使用可变入射角光谱椭偏仪在0.28 - 1.0μm波长区域测定光学常数。两种方法的结果显示出极佳的一致性。结果表明ZrN具有类自由电子特性,可应用德鲁德模型。最佳不透明薄膜的德鲁德等离子体能量(ħωp)在6.6至7.5eV之间,弛豫能量(ħ/τ)在0.29至0.36eV之间。半透明薄膜的椭偏仪数据表明,可见光范围内的折射率(n)随薄膜厚度减小而增加,而消光系数(k)基本不变。在加热的衬底上沉积可改善光学性能。

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