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MOISTURE ADSORPTION AND OPTICAL INSTABILITY IN THIN FILM COATINGS.

机译:薄膜涂料中的水分吸附和光学不稳定。

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摘要

Materials in the form of thin films that have been deposited from the vapor phase are significantly different from similar bulk materials, both optically and mechanically, because of their columnar structure and consequent porosity. Their porosity have been verified in different ways. The effects of the pores on optical and mechanical performance and, in particular, the influence of water adsorption, have also been demonstrated.; Three techniques used for investigating optical instabilities in thin films are given. They all involve sharp resonances. The resonances are associated either with surface plasmons, metal-dielectric narrowband filters, or all dielectric narrowband filters. These resonances are very sensitive functions of layer properties and hence can be used to detect and measure changes in the layers, particularly those that are induced by adsorption of moisture. Moisture adsorption in thin films is a complex process that occurs unevenly in patches. Using resonance techniques, the adsorption isotherms of change in refractive index, of growth rate in patch size, and of peak wavelength shift, which are all important in characterizing the porosity of films, have been measured.; Some effects that locally increase film porosity and create central pores that permit water to penetrate into multilayer structures have been investigated. Based on these results, some suggestions for preventing water adsorption in films are then made.; Moisture penetration into thin film structures is the major source of optical coating instability and it is therefore very important that the mechanisms of penetration by understood. Some deductions of the mechanisms are made from the experimental results.
机译:从气相沉积的薄膜形式的材料在光学和机械上都与类似的块状材料显着不同,这是因为它们的柱状结构和随之而来的孔隙率。它们的孔隙率已经以不同的方式得到验证。还已经证明了孔对光学和机械性能的影响,特别是对水吸附的影响。给出了三种用于研究薄膜光学不稳定性的技术。它们都引起尖锐的共鸣。共振与表面等离子体激元,金属电介质窄带滤波器或所有电介质窄带滤波器相关。这些共振是层特性的非常敏感的函数,因此可以用于检测和测量层中的变化,尤其是那些因水分吸附而引起的变化。薄膜中的水分吸附是一个复杂的过程,在贴剂中不均匀地发生。使用共振技术,已经测量了折射率变化,贴剂尺寸的生长速率和峰值波长偏移的吸附等温线,这些等温线对于表征薄膜的孔隙率都很重要。已经研究了一些局部增加膜孔隙率并产生允许水渗入多层结构的中心孔的效应。根据这些结果,提出了一些防止膜中水吸附的建议。水分渗透到薄膜结构中是光学涂层不稳定性的主要来源,因此,了解渗透机理非常重要。从实验结果中可以推断出一些机理。

著录项

  • 作者

    LEE, CHENG-CHUNG.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 1983
  • 页码 208 p.
  • 总页数 208
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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