Modeling and scaling of chielectric relaxation of nonlinear optical polymers in frequency domain

Shi Wei, Fang Changshui, Pan Qi-wei, Sun Xun, Gu Qing-tian, Xu Dong
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引用次数: 4

Abstract

chielectric relaxation theory was demonstrated. chielectric relaxation that selectively probes chromophore reorientation in the frequency domain was described by the Havriliak Negami (HN) function. chielectric spectra of several nonlinear optical (NLO) polymers were fitted well by the HN function. To describe the scaling of chromophore reorientation relaxation in frequency domain, two-shape parameters m and n describing the low- and high- frequency wings of the chielectric spectra need to be specified, besides the chielectric characteristic relaxation time τ and the chielectric strength Δχ(2). From the temperature dependences of m and n of NLO polymers, the relations between the chromophore relaxation and the α relaxation of the polymer host have been revealed.
非线性光学聚合物的频域电化学弛豫建模与标度
证明了电弛豫理论。用Havriliak - Negami (HN)函数描述了在频域选择性探测发色团重定向的电弛豫。用HN函数对几种非线性光学聚合物的电谱进行了较好的拟合。为了描述发色团重定向弛豫在频域的标度,除了电特性弛豫时间τ和电强度Δχ外,还需要指定描述电谱的低频和高频翼的两个形状参数m和n(2)。从NLO聚合物的m和n的温度依赖性出发,揭示了聚合物主体的发色团弛豫与α弛豫之间的关系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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