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可见和红外光监测的偶氮苯功能化聚合物中全息光栅记录的偏振依赖性。

Polarization dependence of holographic grating recording in azobenzene-functionalized polymers monitored by visible and infrared light.

机构信息

Institute of Physical and Theoretical Chemistry, Wroclaw University of Technology, Wybrzeze Wyspianskiego 27, 50-370 Wroclaw, Poland.

出版信息

J Phys Chem B. 2010 Aug 5;114(30):9751-60. doi: 10.1021/jp103756h.

Abstract

The holographic grating recording process in thin films of amorphous azobenzene-functionalized polymers has been widely reported in the literature. In spite of the many reports, little is known about the mechanisms responsible for different temporal behaviors of the diffraction efficiency during long recording times. Here, we report on experimental studies of the diffraction efficiency changes during the holographic diffraction grating recording process in photochromic polymer. The gratings were inscribed for four different polarization combinations of the recording beams: s-s, p-p, s-p and right to left circular polarization (RCP-LCP) employing the degenerate two-wave mixing technique. The grating recording process was simultaneously monitored by three different wavelengths: 514.5 nm (writing) and 632.8 and 904 nm (reading). The temporal evolution of the diffraction efficiency (for all polarization configurations and for each wavelengths) was precisely fitted within the model, which assumes simultaneous formation of the absorption grating and three coupling phase gratings shifted by 0 or pi with respect to each other. Two of the phase gratings originate from the refractive index grating changes in the bulk (volume) of a material and the third one from the surface relief modulation. The model enabled us to extract relevant parameters for each grating such as the build-up time constant, its final amplitude, and the phase shifts between phase gratings. Performed studies and the discussion of results revealed the main differences in the diffraction grating formation process for s-s, p-p, s-p, and RCP-LCP polarization configurations.

摘要

在非晶态偶氮苯功能化聚合物薄膜中的全息光栅记录过程在文献中已有广泛报道。尽管有许多报道,但对于导致衍射效率在长时间记录过程中呈现不同时间行为的机制知之甚少。在这里,我们报告了光致变色聚合物中全息衍射光栅记录过程中衍射效率变化的实验研究。使用简并双波混合技术,以四种不同的记录光束偏振组合(s-s、p-p、s-p 和右旋圆偏振到左旋圆偏振(RCP-LCP))记录光栅。通过三个不同的波长同时监测光栅记录过程:514.5nm(写入)和 632.8nm 和 904nm(读取)。在模型内精确拟合了衍射效率的时间演化(对于所有偏振配置和每个波长),该模型假设同时形成吸收光栅和三个彼此相差 0 或 pi 的耦合相位光栅。这两个相位光栅分别源于材料体(体积)中的折射率光栅变化和第三个来自表面浮雕调制。该模型使我们能够提取每个光栅的相关参数,例如建立时间常数、其最终幅度以及相位光栅之间的相位差。进行的研究和结果讨论揭示了 s-s、p-p、s-p 和 RCP-LCP 偏振配置的衍射光栅形成过程的主要差异。

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