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Structural inhomogeneity and anisotropy in optical filters and thin films; applications to optical storage media.

机译:滤光片和薄膜中的结构不均匀性和各向异性;应用于光学存储介质。

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摘要

Optical filters and thin film optical devices play an important role in Science and Industry. Several significant applications have emerged in optics, microelectronics and computer technology. In this work, we study some aspects of their design and applications. One class of optical fibers, known as Christiansen filters, are based on scattering phenomena in suspensions of solid particles in a liquid medium. Some new scattering filters in the visible and the near UV regions and their performance characteristics are reported here. Feasibility to fabricate such optical filters in solid matrix form is established. Some applications of these scattering filters are discussed. After an introduction to the optics of homogeneous and isotropic thin films, I discuss the general design of anisotropic thin film media and a scheme implemented to calculate their performance. Optical anisotropy, produced by the growth-induced columnar microstructure in thin films and its effects on the performance of optical filters are studied. Large shifts in the peak wavelength of a typical narrow band filter are predicted. Magneto-optical (MO) thin film media of great importance to erasable optical data storage technology are studied. An approximate technique based on a 2 x 2 matrix formalism is developed to calculate the normal incidence performance of these media. To investigate anisotropic effects, to incorporate more than one magnetic film with arbitrary orientations of magnetization, and to study oblique incidence performance, a completely general 4 x 4 matrix technique is implemented in a computer program. Effects of substrate/superstrate birefringence in the read-out signal of MO media are investigated. Several optimizing design criteria, particularly, the effectiveness in employing appropriate metal or dielectric reflector layers are studied. The influence of the plasma edge of metals in enhancing the polar Kerr rotation of MO media is discussed with illustrations. A contour plot of the Kerr rotation and reflectance is developed to help in the design of these media. An explanation is given for the observation of Kerr rotation enhancement near the plasma reflection edge of the reflector layer adjacent to the active MO layer and in general, where the reflectance spectrum shows a steep gradient.
机译:光学滤波器和薄膜光学器件在科学和工业中起着重要作用。在光学,微电子学和计算机技术中出现了一些重要的应用。在这项工作中,我们研究其设计和应用程序的某些方面。一类称为克里斯蒂安森滤光器的光纤是基于固体颗粒在液体介质中的悬浮液中的散射现象。在此报告了一些在可见光和近紫外区域的新型散射滤光片及其性能特征。建立了以固体基质形式制造这种滤光器的可行性。讨论了这些散射滤光片的一些应用。在介绍了均质膜和各向同性薄膜的光学特性之后,我将讨论各向异性薄膜介质的一般设计以及实现其性能的方案。研究了薄膜中生长诱导的柱状微结构所产生的光学各向异性及其对滤光片性能的影响。可以预测典型的窄带滤光片的峰值波长会有很大的变化。研究了对可擦除光学数据存储技术非常重要的磁光(MO)薄膜介质。开发了一种基于2 x 2矩阵形式主义的近似技术来计算这些媒体的法向入射性能。为了研究各向异性效应,并结合多个具有任意磁化方向的磁性膜,并研究斜入射性能,在计算机程序中实现了一种完全通用的4 x 4矩阵技术。研究了基底/上层双折射对MO介质读出信号的影响。研究了几种优化设计标准,特别是在采用适当的金属或介电反射层方面的有效性。通过插图讨论了金属等离子边缘对增强MO介质的极性Kerr旋转的影响。绘制了克尔旋转和反射率的轮廓图,以帮助设计这些介质。对于观察到在靠近有源MO层的反射器层的等离子体反射边缘附近的克尔旋转增强的观察给出了解释,并且通常,其中反射率光谱示出了陡峭的梯度。

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