Liu Peng, Sun Xiudong, Zhao Yu, Li Zeren
Opt Express. 2019 Jul 8;27(14):19583-19595. doi: 10.1364/OE.27.019583.
The range of exposure for which the holographic reciprocity law holds in photopolymers, is mainly dependent on the light exposure intensity and polymerization rate between photo-initiator and monomers. Matching this is the key to improving performance. Characterization of the dependence on diffraction efficiency of the volume transmission gratings on holographic reciprocity matching of TI/PMMAs under different milliseconds with different thickness (1-3mm) has been carried out for the novel high-sensitive TI/PMMA polymers. Diffraction gratings can be recorded in TI/PMMAs under 20ms with the exposure intensity of 115mW/cm. The physical and chemical mechanism under and after single shot exposure is analyzed which can be divided into three parts, namely, photo-induced polymerization, dark diffusion of photosensitive molecules, and counter-diffusion of photoproducts. Holographic properties of TI/PMMAs of different thickness (1-3mm) under different shingle-shot durations and repetition rates are investigated in detail as well. The diffraction efficiency reaches 67% with the response time of 15.69s. By this way, volume holographic gratings with no reciprocity failure can be recorded under multi-pulse exposure, with high grating strength and rapid sensitivity in TI/PMMAs, which indicates the volume holographic memories have the potential for recording and storing transient information in life and in the military.
光聚合物中全息互易律成立的曝光范围,主要取决于光曝光强度以及光引发剂与单体之间的聚合速率。实现二者匹配是提高性能的关键。针对新型高灵敏度TI/PMMA聚合物,已对不同厚度(1 - 3毫米)、不同毫秒数下TI/PMMAs的全息互易匹配对体透射光栅衍射效率的依赖性进行了表征。在曝光强度为115mW/cm²的情况下,TI/PMMAs可在20毫秒内记录衍射光栅。分析了单次曝光前后的物理和化学机制,其可分为三个部分,即光致聚合、光敏分子的暗扩散以及光产物的反向扩散。还详细研究了不同厚度(1 - 3毫米)的TI/PMMAs在不同单次曝光持续时间和重复率下的全息特性。衍射效率达到67%,响应时间为15.69秒。通过这种方式,在多脉冲曝光下可以记录无互易失效的体全息光栅,TI/PMMAs具有高光栅强度和快速灵敏度,这表明体全息存储器在生命和军事领域记录和存储瞬态信息方面具有潜力。