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OPTICAL AND ACOUSTIC DEVICE APPLICATIONS OF FERROELASTIC CRYSTALS (GRATINGS, DOMAIN WALLS, FILTERS, PERIODIC STRUCTURES).

机译:铁弹性晶体的光学和声学设备应用(光栅,域壁,过滤器,周期结构)。

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摘要

This dissertation presents the discovery of a means of creating uniformly periodic domain gratings in a ferroelastic crystal of neodymium pentaphosphate (NPP). The uniform and non-uniform domain structures which can be created in NPP have the potential applications as tunable active gratings for lasers, tunable diffraction gratings, tunable Bragg reflection gratings, tunable acoustic filters, optical modulators, and optical domain wall memories.;Techniques of injecting periodic and aperiodic domain walls into NPP are presented. The nucleation process of the uniformly periodic domain gratings in NPP is described in terms of a newly-discovered domain structure, namely the ferroelastic bubble. A ferroelastic bubble is the elastic analogue to the well-known magnetic bubble. The period of the uniformly periodic domain grating is tunable from 100 to 0.5 microns and the grating period may be tuned relatively rapidly. The Bragg efficiency of these tunable gratings is 77% for an uncoated crystal. Several demonstration devices which use these periodic structures are discussed. These devices are a tunable active grating laser (TAG laser), a tunable active grating (TAG), and a tunable acoustic bulk wave filter.;The interaction of optical and acoustic waves with ferroelastic domain walls in NPP is presented in detail. Acoustic amplitude reflection coefficients from a single domain wall in NPP are much larger than other ferroelastic-ferroelectrics such as gadolinium molybdate (GMO). Domain walls of NPP are used to make two demonstration acoustic devices: a tunable comb filter and a tunable delay line. The tuning process is accomplished by moving the position of the reflecting surface (the domain wall). A theory of the reflection of optical waves from NPP domain walls is discussed. The optical reflection is due to a change in the polarization of the wave, and not a change in the index, as the wave crosses the domain wall. Theoretical optical power reflection coefficients show good agreement with the experimentally measured values. The largest optical reflection coefficient of a single domain wall is at a critical angle and is 2.2% per domain wall.
机译:本论文提出了一种在五磷酸钕(NPP)的铁弹性晶体中创建均匀周期畴光栅的方法的发现。可以在NPP中创建的均匀和非均匀畴结构具有潜在的应用前景,如激光器的可调有源光栅,可调衍射光栅,可调布拉格反射光栅,可调声滤波器,光学调制器和光学域壁存储器。介绍了将周期性和非周期性畴壁注入NPP。根据新发现的畴结构,即铁弹性气泡,描述了NPP中均匀周期畴光栅的成核过程。铁弹性气泡是众所周知的磁性气泡的弹性类似物。均匀周期畴光栅的周期可以从100微米调整到0.5微米,并且光栅周期可以相对快速地进行调整。对于未镀膜的晶体,这些可调光栅的布拉格效率为77%。讨论了使用这些周期性结构的几种演示设备。这些设备是可调谐有源光栅激光器(TAG激光器),可调谐有源光栅(TAG)和可调谐声体波滤波器。;详细介绍了NPP中光波和声波与铁弹性畴壁的相互作用。 NPP中单个畴壁的声振幅反射系数远大于其他铁弹性铁电体,例如钼酸g(GMO)。 NPP的畴壁用于制作两个演示声学设备:可调谐梳状滤波器和可调谐延迟线。通过移动反射面(畴壁)的位置可以完成调谐过程。讨论了从NPP畴壁反射光波的理论。当光穿过畴壁时,光反射是由于波的偏振的变化而不是折射率的变化。理论光功率反射系数与实验测量值显示出良好的一致性。单个畴壁的最大光反射系数处于临界角,每个畴壁为2.2%。

著录项

  • 作者

    MEEKS, STEVEN WAYNE.;

  • 作者单位

    Stanford University.;

  • 授予单位 Stanford University.;
  • 学科 Physics Acoustics.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 189 p.
  • 总页数 189
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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