LC面板中ps脉冲感应光栅的动力学

S. Bartkiewicz, A. Miniewicz, B. Sahraoui, F. Kajzar
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引用次数: 1

摘要

本文主要研究了短脉冲激光照射条件下PVK:TNF杂化聚合物液晶面板的制备。用倍频Nd:YAG激光器(λ = 532 nm)输出持续时间为20 ps的脉冲,产生交叉光束,诱导LC面板上的衍射光栅。因此,感应光栅是由工作波长(λ)为632.8 nm的弱功率He-Ne激光器的连续波激光辐射读取的。在PVK:TNF混合液晶面板中测量的一阶衍射强度的时间演化随实验条件的不同显示出许多有趣的特征和复杂性。在脉冲后不到1ms的时间内已经观察到实质性的衍射,光栅衰减在数百毫秒内完成。至少可以区分三个不同的光栅构建步骤,这些步骤以不同的方式取决于实验条件。结合聚合物层的光导性质和使用的液晶E-7 (Merck)的光学和电学性质,讨论了观察到的响应的初步机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamics of ps-pulse induced gratings in LC panels
In the present work we focused our attention on studies of PVK:TNF hybrid polymer liquid crystal panels under short pulse laser illumination conditions. The diffraction gratings in a LC panel were induced by crossed beams generated by doubled in frequency Nd:YAG laser ((lambda) equals 532 nm) delivering pulses of 20 ps duration. So induced gratings were read by a cw laser radiation coming from a weak power He-Ne laser working at (lambda) equals 632.8 nm. The temporal evolution of intensity of first order diffraction measured in PVK:TNF hybrid liquid crystal panels shows many interesting features and complexity dependent on various experimental conditions. The substantial diffraction is observed already in time less than 1 ms after the pulse and the grating decay is completed within hundreds of milliseconds. At least three different steps of grating build-up can be distinguished which depend in various ways on the experimental conditions. A tentative mechanism of the observed responses is discussed in connection with the photoconductive properties of polymeric layers and the optical and electrical properties of the used liquid crystal E-7 (Merck).
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