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Role of optical extinction in holographic polymer-dispersed liquid crystals

机译:光学消光在全息聚合物分散的液晶中的作用

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The origin of optical diffraction in holographic polymer-dispersed liquid crystal (H-PDLC) transmission gratings was investigated by optical two beam-coupling analysis based on the linear phase-shift technique. Gratings with the pitch of 1 micrometer and the thickness of 50 micrometers were fabricated from a UV curable mixture of commercially available constituents. Photopolymerization in the interference field of two laser beams produces not only a periodic variation of the refractive index, but also a periodic modulation of optical extinction due to light scattering. Both of them contribute to the diffraction efficiency of the gratings. The magnitudes and relative phases of the two contributions were measured as a function of a recording time of the grating and as a function of an applied external electric field. During the initial stage of the grating formation phase modulation is predominant, while at longer exposures both contributions have the same order of magnitude. They are phase shifted with respect to each other for around π/2. Application of an external electric field causes a strong decrease of the amplitude modulation, while phase modulation is much less perturbed.
机译:通过基于线性相移技术,通过光学两个光束耦合分析研究了全息聚合物分散的液晶(H-PDLC)传输光栅中的光学衍射起源。具有1微米间距的光栅和厚度为50μm的光栅由市售成分的UV可固化混合物制成。两个激光束的干涉场中的光聚合不仅产​​生折射率的周期性变化,而且产生由于光散射而导致的光学灭绝的周期性调制。它们都有助于光栅的衍射效率。作为光栅的记录时间和作为应用外部电场的函数的函数测量两种贡献的幅度和相对阶段。在光栅形成相位调制的初始阶段是主要的,而在更长的曝光时,两种贡献都具有相同的数量级。它们相对于彼此相对于π/ 2相互偏移。外部电场的应用导致幅度调制的强度降低,而相位调制则不那么扰动。

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