偶氮聚合物中激光诱导的光学和热可逆双折射

D. Nazarova, L. Nedelchev, D. Ivanov, B. Blagoeva, N. Berberova, E. Stoykova, G. Mateev, D. Kostadinova
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引用次数: 4

摘要

偶氮聚合物在偏振光照射下具有诱导各向异性,是一种用于偏振全息记录的有机材料。它们具有已知偏振敏感材料的所有理想特性,如高灵敏度和可逆性,但在光致双折射的幅度上大大优于它们。这使得记录具有高衍射效率的可逆偏振光栅成为可能。本文报道了偶氮聚合物双折射光致可逆性的实验研究结果,这取决于后续的光学和热处理条件。为了研究不同类型偶氮聚合物双折射的多次记录和擦除动力学,制备了不同类型偶氮聚合物的薄膜。用两种不同的擦除方法——升温擦除和圆偏振光照射擦除,研究了偏振记录的可逆性。
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Laser induced optically and thermally reversible birefringence in azopolymers
Azopolymers are well known organic materials for polarization holographic recording due to the induced anisotropy under illumination with polarized light. They possess all the desirable characteristics of the known polarization-sensitive materials, as high sensitivity and reversibility, but excel them substantially in the magnitude of the photoinduced birefringence. This makes possible to record reversible polarization gratings with high diffraction efficiency. In this paper results of experimental investigations on the reversibility properties of birefringence photoinduced in azopolymers are reported, depending on the conditions of subsequent optical and thermal treatment. Thin films of different polymers were prepared in order to examine the kinetics of multiple recording and erasure of birefringence in different types of azopolymers. The reversibility of the polarization recording has been studied using two different method of erasure – by increased temperature and on illumination with circularly polarized light.
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