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Nonlinear Optical Properties of Organic and Polymeric Thin Film Materials of Potential for Microgravity Processing Studies

机译:有机和高分子薄膜材料的非线性光学性质,可用于微重力加工

摘要

In this paper, we will take a closer look at the state of the art of polydiacetylene, and metal-free phthalocyanine films, in view of the microgravity impact on their optical properties, their nonlinear optical properties and their potential advantages for integrated optics. These materials have many attractive features with regard to their use in integrated optical circuits and optical switching. Thin films of these materials processed in microgravity environment show enhanced optical quality and better molecular alignment than those processed in unit gravity. Our studies of these materials indicate that microgravity can play a major role in integrated optics technology. Polydiacetylene films are produced by UV irradiation of monomer solution through an optical window. This novel technique of forming polydiacetylene thin films has been modified for constructing sophisticated micro-structure integrated optical patterns using a pre-programmed UV-Laser beam. Wave guiding through these thin films by the prism coupler technique has been demonstrated. The third order nonlinear parameters of these films have been evaluated. Metal-free phthalocyanine films of good optical quality are processed in our laboratories by vapor deposition technique. Initial studies on these films indicate that they have excellent chemical, laser, and environmental stability. They have large nonlinear optical parameters and show intrinsic optical bistability. This bistability is essential for optical logic gates and optical switching applications. Waveguiding and device making investigations of these materials are underway.
机译:在本文中,鉴于微重力对其光学特性,非线性光学特性以及集成光学的潜在优势的影响,我们将仔细研究聚二乙炔和不含金属的酞菁薄膜的技术现状。这些材料在集成光学电路和光学开关中的使用方面具有许多吸引人的特征。与在重力下处理的材料相比,在微重力环境下处理的这些材料的薄膜显示出更高的光学质量和更好的分子排列。我们对这些材料的研究表明,微重力可以在集成光学技术中发挥重要作用。聚二乙炔薄膜是通过光学窗口通过紫外线照射单体溶液而制得的。形成聚二乙炔薄膜的这一新技术已经过修改,可以使用预编程的UV激光束构建复杂的微结构集成光学图案。已经证明了通过棱镜耦合技术引导通过这些薄膜的波。已经评估了这些薄膜的三阶非线性参数。具有良好光学质量的无金属酞菁薄膜在我们的实验室中通过气相沉积技术进行了加工。对这些膜的初步研究表明,它们具有出色的化学,激光和环境稳定性。它们具有较大的非线性光学参数,并显示出固有的光学双稳性。这种双稳性对于光学逻辑门和光学开关应用至关重要。正在对这些材料进行波导和器件研究。

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