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Novel type of red-sensitive photopolymer system for optical storage

机译:用于光存储的新型红敏光敏聚合物体系

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Abstract: In this paper, a novel type of red sensitive photo-polymer system for optical storage, here called RSPP, is presented. First of all, the components in RSPP, for example, photo- sensitizer, photo-initiator, monomer, copolymer, combiner, stabilizer, hardener, and fabrication and processing technique of RSPP are given. Then, the absorption spectrum of RSPP material is measured. And the result shows the material is only sensitive to read light, whose absorption peak is at 662 nm and half-width of the absorption is about 100 nm. After that, the property of exposure in RSPP is studied. It is found that RSPP holographic plate has several advantages over the optical storage (holographic optical storage) material previously reported. First, this RSPP is fit to record both transmission holograms and reflection holograms. Second, the holograms recorded in RSPP plate can be processed both in dry and in wet processes due to its strong real-time effect. The performance parameters of the ESPP are following: (1) The photosensitivity is about 2 mJ/cm$+2$/ at 630 nm; (2) The resolution of the material is more than 4000 pp/mm; (3) The saturation refractive index modulation is 0.0034 and 0.0141 for real time and wet processing respectively. In the study of the exposure in RSPP holographic plate, some other phenomena concerning real time effect in RSPP, such as, light- amplification and modulation of single light beam effect, are found. The mechanism of these phenomena is discussed. !10
机译:摘要:在本文中,提出了一种新型的用于光存储的红色敏感光敏聚合物体系,这里称为RSPP。首先,给出了RSPP中的组分,例如光敏剂,光引发剂,单体,共聚物,结合剂,稳定剂,硬化剂,以及RSPP的制备和加工技术。然后,测量RSPP材料的吸收光谱。结果表明,该材料仅对读取光敏感,其吸收峰在662 nm处,吸收的半峰宽约为100 nm。之后,研究了RSPP中的暴露特性。已经发现,相对于先前报道的光学存储(全息光学存储)材料,RSPP全息照相板具有若干优点。首先,该RSPP适合记录透射全息图和反射全息图。其次,由于RSPP板中记录的全息图具有很强的实时性,因此可以在干法和湿法工艺中进行处理。 ESPP的性能参数如下:(1)在630nm处的光敏度约为2mJ / cm 2 +2 2 /。 (2)材料的分辨率大于4000 pp / mm; (3)实时和湿法处理的饱和折射率调制分别为0.0034和0.0141。在对RSPP全息照相版曝光的研究中,发现了其他一些与RSPP实时效应有关的现象,例如光放大和单光束效应的调制。讨论了这些现象的机理。 !10

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