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High-performance rewritable Bragg hologram with high multiplicities

机译:高性能可重写布拉格全息图,具有高倍数

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Azobenzene-containing polymer, in which a change in birefringence can be induced by photoisomerization, is one of promising materials for holographic applications. To develop high-performance holographic materials using azobenzene polymers, it is necessary to prepare optically transparent thick films with capability of a large photoinduced change in refractive index to obtain high diffraction efficiency and fast response in the Bragg regime. A number of materials have been studied so far, but no attention has been paid to the combination of thick amorphous copolymers films containing photoresponsive and mesogenic groups in the side chain and polarization gratings formed in the Bragg regime. In this paper, we prepared optically transparent thick polymer films containing an azobenzene moiety with photosensitivity and a tolane moiety with high birefringence, and formed intensity and polarization gratings with linearly polarized beams and orthogonal circularly polarized beams, respectively. It was found that the nearly theoretically maximum diffraction efficiency was successfully achieved, and the recorded hologram could be erased thermally or photochemically. In addition, a large change in refractive index was induced in the polarization grating, and high diffraction efficiency (~90%) and quick response (920 ms) was realized simultaneously.
机译:含偶氮苯的聚合物,其中通过光异构化诱导双折射的变化,是全息应用的有希望的材料之一。为了使用偶氮苯聚合物开发高性能全息材料,需要制备光学透明的厚膜,其具有折射率大的光致抗折射率的能力,以获得高衍射效率和布拉格政府中的快速响应。到目前为止已经研究了许多材料,但没有注意含有侧链中含有光反应和介质基团的厚无定形共聚物膜的组合和在布拉格政府中形成的偏振光栅。在本文中,我们制备了含有偶氮苯部分的光学透明厚聚合物膜,其具有高双折射的甲苯苯并部分,以及具有线性偏振梁和正交的圆偏振梁的强度和偏振光栅。结果发现,成功实现了几乎理论上最大的衍射效率,并且可以热擦除记录的全息图。另外,在偏振光栅中诱导折射率的大变化,同时实现高衍射效率(〜90%)和快速响应(920ms)。

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