非线性光学聚合物DR1/PMMA薄膜的电学和光学性能

Hongyan Zhang, Z. Xia, Shiming Zhou, H. Ding, Yang Cao, Huamao Lin, Jianwei Zhu
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引用次数: 7

摘要

采用旋涂法制备了非线性光学材料DR1/PMMA薄膜。采用恒压电晕充电对薄膜进行极化。发现在较高的时效温度(或极化温度)下,表面电位衰减较慢。比较了开路(OC)和短路(SC)热刺激放电(TSD)的光谱。在开路TSD测量中,在70/spl度/C处有一个负峰,在100/spl度/C处有一个正峰。短路TSD谱只出现一个负宽峰。OC第一个负峰源于DR1/PMMA薄膜中极化的弛豫,第二个正峰是由于空间电荷的释放。这两种峰通常出现在极性物质中。表明空间电荷被捕获是为了稳定极性材料的极化。研究了样品在可见光和近可见光范围内的二阶非线性光学效应和光吸收。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The electrical and optical properties of the nonlinear optical polymer DR1/PMMA films
The nonlinear optical material DR1/PMMA films were prepared by spin-coating method. The films were poled by constant voltage corona charging. Decay of surface potential was found to be slower at higher aging temperature (or poling) temperatures. The spectra of open-circuit (OC) and short-circuit (SC) TSD (Thermally Stimulate Discharge) were compared. One negative at 70/spl deg/C and one positive peaks at 100/spl deg/C were determined in open circuit TSD measurement. Only one negative broad peak appeared in short circuit TSD spectra. The OC first negative originated from the relaxation of polarization in the DR1/PMMA films, the second positive peak was due to the release of space charges. These two kinds of peaks usually emerge in polar materials. It indicated that the space charge was trapped to stabilize the polarization in polar materials. The second nonlinear optical effect and optical absorption in and near visible wavelength range was studied in the samples.
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