首页> 外文会议>Conference on Linear, Nonlinear, and Power-Limiting Organics 31 July-3 August 2000 San Diego, USA >Material glass-transition temperature, device thickness and operational temperature effects on absorption of electro-optic polymer films
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Material glass-transition temperature, device thickness and operational temperature effects on absorption of electro-optic polymer films

机译:材料玻璃化转变温度,器件厚度和工作温度对电光聚合物膜吸收的影响

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摘要

In chromophore doped materials, the trade-off between nonlinear coefficient and absorption is a critical issue. In particular, X(2):X(2) cascading based applications at 1.55 umm impose stringent conditions on the absorption at the second-harmonic wavelength. Transmission spectroscopy through a thin film does not provide sufficient resolution to measure the absorption coefficient on the red side of the main absorption band. However, assuming Voigt profiles, it is possible to extrapolate the absorption coefficient in the near infrared (NIR) from the main electronic resonance. We report on the dramatic impact of the host polymer matrix on the near infrared absorption of azobenzene chromophores. The effect is directly correlated to the host polymer glass transition temperature. The case of hybrid sol-gel material is also discussed. In particular, we present here an interesting correlation between the poling temperature and some spectroscopic properties This correlation and thermo-spectroscopic measurements lead us to define an effective T_g in the sol-gel system. We also report on film thickness dependent absorption properties.
机译:在发色团掺杂的材料中,非线性系数和吸收之间的权衡是一个关键问题。特别是,基于X(2):X(2)级联的应用程序在1.55 um处对第二谐波波长的吸收施加了严格的条件。通过薄膜的透射光谱不能提供足够的分辨率来测量主吸收带红色侧的吸收系数。但是,假设有Voigt轮廓,则可以从主电子共振推断出近红外(NIR)中的吸收系数。我们报告了主体聚合物基质对偶氮苯生色团的近红外吸收的巨大影响。该作用与主体聚合物玻璃化转变温度直接相关。还讨论了混合溶胶-凝胶材料的情况。特别是,我们在这里给出了极化温度与某些光谱性质之间的有趣关系。这种相关性和热光谱测量值使我们能够定义溶胶-凝胶系统中的有效T_g。我们还报告了依赖于膜厚度的吸收性能。

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