标题: | 体积全像记录材料研制与物理机制分析及其应用 Investigations on Volume Holographic Recording Materials and Their Applications |
作者: | 林烜辉 LIN SHIUAN-HUEI 国立交通大学电子物理学系(所) |
关键字: | 体积全像光学;全像高分子记录材料;光资讯储存应用;光学资讯处理应用;Volume holographic optics;Doped photopolymer materials;Volumeholographic recording materials |
公开日期: | 2009 |
摘要: | 本计划的目标在探索‘掺杂式高分子聚合物的体积全像光学特性’,以此 开发新颖的体积全像记录光学材料,并探索其在光学资讯领域应用的研究。 研究中将以我们实验室过去研发之PQ/PMMA 高分子体积全像材料的经 验及技术为蓝本,发展三种新颖的记录材料:1. PQ 掺杂共基底高分子材料、 2. Irgacure784 光敏感剂掺杂PMMA 高分子材料、3. 掺杂式Epoxy 系列高分子 记录材料。我们也研究其全像记录的物理机制,前两者可以改进现有材料的记 录特性,第三种材料则为延续成果的新尝试,三者均可形成块材,提供新颖的 光学资讯储存及处理应用。 配合整体计划之进行,第一阶段,致力发展三种材料的研制,并以 PQ/PMMA 材料的体积全像记录机制为模型,探讨新颖材料的记录机制,且同 时建立各式量测系统进行相关光学实验分析,为建立材料参数提供规范制定与 取舍;第二阶段,着重于材料体积全像记录特性量测,提供材料改进的依据, 并配合相关记录机制,探索及设计其在光学资讯处理的相关应用;第三阶段为 整合应用阶段,结合全像记录量测与基础模型分析结果,致力于光学资讯储存 及处理研究,初步的构想将进行平面式光学系统积体化、体积全像多通道相干 器以及快速图形识别等新颖应用之开发。 总之,本计划将对掺杂式高分子体积全像记录材料的设计、分析及量测做 整体深入的研究,这是体积全像光学材料一个非常基础的而且也是创新的研 究,藉此探索我们自己的适合的光学资讯处理的体积全像材料。再者,透过详 细的分析也可进一步探索新的高分子材料之非线性光学特性。 We propose to launch three-year comprehensive studies on the doped photopolymer materials for volume holographic recording, with their applications for optical information processing and storage. Based on current research results of developing the PQ/PMMA photopolymer, we will develop three novel photopolymer materials, including PQ doped co-polymer materials, Irgacure 784 PMMA photopolymer, and doped epoxy family polymer materials. The former two kinds of materials are expected to have better the recording dynamic range and sensitivity than PQ/PMMA photopolymer, as well as the third kind of materials is a new exploration for development novel materials. This research is divided into three phases. In the first year, we will focus on the fabrication of three materials and development of the physical mechanism of the holographic recording in our photopolymer materials. The results will provide the guidelines for designing and optimizing materials. During the same period, basic tools for measuring the optical and holographic properties of material will be constructed. In the second year, we will focus on experimentally characterizing the properties of volume holographic recording in our materials. The results can provide us to further optimize materials. In addition, according to holographic recording properties of the materials, we will explore their applications on optical information storage and processing. In the third year, based on the theoretical and experimental works, we shall continue the study on the volume holographic recording in these novel materials and explore the applications for optical information storage and processing. We plan to investigate three topics, including the planar integration of optical system using volume holograms, volume holographic multi-channel correlator, and fast parallel pattern recognition. In summary, this research will perform an intensive study on the material design, analysis, and applications on the doped photopolymer materials. These novel materials are expected to be a new invention, and the study will also possibly lead to exploring new physical mechanisms of holographic recording in photopolymer material. |
官方说明文件#: | NSC97-2112-M009-003-MY3 |
URI: | http://hdl.handle.net/11536/101139 https://www.grb.gov.tw/search/planDetail?id=1752798&docId=298831 |
显示于类别: | Research Plans |