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Determination of refractive index and absorbance modulation amplitudes from angular selectivity of holograms in polymer material with phenanthrenequinone

机译:根据菲醌与聚合物材料中全息图的角度选择性确定折射率和吸光度调制幅度

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Amplitude and phase contributions to mixed volume holographic gratings were extracted from measured contours of angular selectivity. Holograms for the investigation were recorded in the glassy polymer material with phenanthrenequinone (PQ) using the DPSS CW laser (532 nm) and then self-developed due to molecular diffusion of PQ, reaching diffraction efficiency about 40%. Refractive index and absorbance modulation amplitudes of those holograms were obtained as adjustable parameters from theoretical equations by fitting angular dependencies of zeros and 1st orders diffraction efficiency measured at 450, 473, 532, and 633 nm at the different stages of hologram development. Mixed gratings manifest themselves in asymmetrical transmittance selectivity contours with one minimum and one maximum shifted with respect to the Bragg angle, while symmetrical contours with a minimum or a maximum at the Bragg angle are characteristic of pure phase and amplitude gratings, respectively. In the course of a hologram development, it converts from a predominantly amplitude-mixed to almost purely phase one in the case of readout using a light within the absorption band of PQ and maintains the phase nature besides it. The value of refractive index amplitude is ranging from 5 × 10~(-6) to 10~(-4) and the value of absorbance amplitude is up to 140 m~(-1).
机译:从测得的角度选择性轮廓提取混合体积全息光栅的幅度和相位贡献。用于研究的全息图使用DPSS CW激光(532 nm)用菲醌(PQ)记录在玻璃状聚合物材料中,然后由于PQ的分子扩散而自行显影,达到约40%的衍射效率。这些全息图的折射率和吸光度调制幅度是通过拟合零值的角度依赖性和在全息图不同阶段在450、473、532和633 nm处测得的一阶衍射效率拟合而从理论方程式中获得的可调整参数。混合光栅表现为相对于布拉格角有一个最小值和一个最大值偏移的非对称透射率选择性轮廓,而在布拉格角处具有最小值或最大值的对称轮廓分别是纯相位和振幅光栅的特征。在全息图显影的过程中,在使用PQ吸收带内的光进行读出的情况下,它会从主要混合的振幅转换为几乎纯的第一相,并保持其相位性质。折射率幅值的范围为5×10〜(-6)至10〜(-4),吸光度幅值的最大值为140 m〜(-1)。

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