标题: 全像高分子材料之新颖体积全像纪录研究与相关光资讯应用
Photopolymer for Novel Volume Holographic Recording and Its Applications on Optical Information Storage and Processing
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;光资讯储存及处理;全像三维立体显示;全像 光学元件;Volume holographic optics;Doped photopolymer materials;Optical information storage and processing;Holographic 3D Displays;Holographic optical elements
公开日期: 2012
摘要: 本计昼旨在探索‘新颖体积全像纪录技术以及其应用于光资讯之研究’,内容包括两大 项目:(1).研制低收缩高分子体积全像材料,进行新颖的全像纪录机制与特性研究,并针对相 关光资讯应用进行材料特性研发。(2).研究体积全像技术于前瞻光资讯之应用,着重于资讯储 存媒体、3D显示器元件以及全像光学元件等方向。

在低收缩高分子体积全像材料方面,将承续实验室研发之PQ/PMMA高分子体积全像材 料的经验及技术,首先完善两阶段热聚合制程的技术,发展高光学品质的块材制程,其次, 着重于两种新颖的全像记录方式研究:偏极化全像与双波长全像。我们将以实验进行光化学 分析,研究其记录的物理机制,提供全像纪录理论模型建立之基础,且同时建立各式量测系 统进行相关光学实验分析,量测全像记录特性,配合相关记录机制理论模拟比较,建立材料 参数提供规范制定与取舍,探索及设计其在光学资讯处理的相关应用。

在光资讯应用方面,将以实验室建立体积全像技术出发,配合材料的研发,进行全像资 讯储存媒体、3D显示器元件以及全像光学元件等前瞻性研究。首先,根据偏极化全像纪录特 性,研究偏极化资讯编码及储存多工之可行性,以增加资讯储存的安全性及容量;其次,配 合材料低收缩纪录特性,结合实验室以往研究液晶3D显示面板的基础,进行液晶显示器次 微米驱动特性,以及重建穿透式全像所需空间同调重建光源的研究,并以体积全像设计制作, 以实验展示单色的穿透式全像3D显示面板;根据极化全像纪录之重建极化方向及双波长全 像纪录之选择性纪录两个特殊特性,进行圆偏振极化分光器及积体化窄频宽光学滤波器等新 颖全像光学元件之研究。

综合理论与实验之执行,吾人预期可以得到许多关键性成果,作为后续整合发展全像资 讯储存处理、全像3D影像显示系统以及全像光学元件的重要基础。
We propose to launch a long term theoretical and experimental investigation on the novel volume holography in PQ/PMMA photopolymer and its possibility of using those volume holographic technologies for optical information storage, 3D holographic display devices and holographic optical components.

For holographic recording in photopolymer material, based on current research results of developing the PQ/PMMA photopolymer, we will study the key issue for two-step thermo-polymerization technique, and propose a system metric for fabricating bulk sample with good optical quality. Using these materials, novel holographic recordings including polarization holographic and two-color holographic recordings will be explored. The physical mechanism of these novel holographic recordings in our photopolymer materials will be studied and experimentally characterization of recording properties will be performed. The results provide the guidelines for designing and optimizing materials. In addition, according to holographic recording properties of the materials, we will explore their applications on optical information storage and processing.

For the holographic optical information applications, three topics will be studied, including polarization multiplexed holographic data storage, modulation of sub-micro display pixel and a spatially coherent lighting of novel holographic display system, as well as polarized holographic and cascaded narrowband optical filter components. Therefore, in the proposed program, we will first investigate the properties of polarization maintaining of recorded polarization hologram, in order to collect the knowledge and carry out ultra-high capacity data storage system using polarization multiplexing. With the material knowledge, we then focus both theoretical and experimental investigation on the possibility of developing holographic optical elements for 3D holographic display as well as polarization and spectral optical filter. Specifically, the tasks include (a). modulation and driving properties of the liquid crystal display panels; (b). volume holographic flat spatial coherent backlight; (c). circularly polarized holographic beam splitter; (d). cascaded holographic narrowband optical filters. In the long term investigation, the results of these research tasks can be integrated into a display system of 3D holographic images.

In summary, this research will perform an intensive study on novel applications of volume holographic technique. The developed materials and recording technique 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. The developed holographic optical information applications will also be leading model that can open new window for using more freedoms from the light wave to create new optical elements.
官方说明文件#: NSC101-2221-E009-111-MY3
URI: http://hdl.handle.net/11536/98553
https://www.grb.gov.tw/search/planDetail?id=2635465&docId=396324
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