Liu Peng, Chang Fuwei, Zhao Yu, Li Zeren, Sun Xiudong
Opt Express. 2018 Jan 22;26(2):1072-1082. doi: 10.1364/OE.26.001072.
Ultrafast holographic recording in bulk phenanthrenequinone dispersed poly (methyl methacrylate) photopolymers is experimentally examined under nanosecond pulsed exposure. A modified interference optical system is set to investigate the dark enhancement effect and real-time diffraction grating strength. Single transmission diffraction grating is recorded in a 6 nanosecond pulse exposure. Grating enhancement formation with different pulse quantity, repetition rate and spatial frequency are also measured. Diffraction efficiency is enhanced by increasing the pulse number as well as the single-pulse energy. The grating strength of 0.58 within 1.8 μs cumulative exposure time is obtained. Moreover, holographic reciprocity failure occurring in the ultrafast holographic storage is analyzed. This paper presents a practical support for PQ/PMMA photopolymers in applications of transient information holographic storage.
在纳秒脉冲曝光条件下,对块状菲醌分散的聚甲基丙烯酸甲酯光聚合物中的超快全息记录进行了实验研究。设置了一种改进的干涉光学系统,以研究暗增强效应和实时衍射光栅强度。在6纳秒脉冲曝光中记录了单透射衍射光栅。还测量了不同脉冲数量、重复率和空间频率下的光栅增强形成情况。通过增加脉冲数以及单脉冲能量来提高衍射效率。在1.8微秒累积曝光时间内获得了0.58的光栅强度。此外,还分析了超快全息存储中出现的全息互易律失效情况。本文为PQ/PMMA光聚合物在瞬态信息全息存储应用中提供了实际支持。