标题: 全像资讯系统与应用
Holographic Information System and Applications
作者: 许根玉
HSU KEN-YUH
国立交通大学光电工程学系(所)
关键字: 全像光学;体积全像术;双波长全像材料;光折变晶体;电脑
全像;光资讯储存处理与显示;Holography;Volume holograms;Two-wavelength materials;Photorefractive crystals;Computer holograms;Optical information processing
公开日期: 2014
摘要: 本计划旨在研究全像资讯光学系统的基本特性及其应用,并以系统容量
及误码率两个参数来定量评估全像系统,建立设计与性能评估的准则。
我们将以本实验室过去融合光波绕射与通讯系统所建立之资讯系统观念
为主轴,深入探讨全像光学在资讯储存、处理、与显示之基本特性与应用,
建立全像光学资讯系统之设计、评估、与应用基础。具体言之,我们将以全
像资讯的三个题目做为研究对象: (1). 光学像差对全像储存系统之影响;(2).
双波长全像纪录技术与应用;(3). 电脑全像显示技术之先期研究。三年期间,
将以理论推导、电脑模拟、及光学实验交互验证。
光学像差方面,我们将推导各种赛得像差产生之点扩散函数,及其对应
之概率分布函数,据之求出系统容量及误码率,以评估各别像差之影响,并
以光学设计优化之。双波长全像纪录技术方面,将探讨掺杂过渡金属元素之
硫化物光折变晶体、以及本实验室研制之光感高分子材料的双波长全像纪录
特性,应用于动态体积全像资讯储存,以及研制波长多工之光纤通信(DWDM)
系统的滤波分频模组(wavelength add-drop module, WADM),并以系统容量及
误码率评估模组功能。电脑全像显示方面,我们将以无透镜投影系统为对象,
探讨电脑全像显示器的可行性。我们将探讨全像之计算、产生、显示、与成
像技术,并以系统误码率评估其性能。我们也会以复合全像之观念探讨电脑
全像3D 显示之可行性。
储存、处理、与显示三个项目乃是全像光资讯系统之主要内涵。因此,
预期以上之学理以及各项研究成果,将可应用到其他全像资讯光学以及数位
全像系统。
The goal of this research is to perform comprehensive investigations on holographic
information systems and applications. Storage capacity and bit error rate (BER), which were
established in our previous research, will be used as synergic system metrics for the design and
evaluation of the holographic systems. Three major holographic information systems will be
investigated in this project: (1). The influence of optical aberrations on holographic data storage;
(2). Technique and applications of two-wavelength holographic recording; (3). Feasibility of using
computer holograms for projection displays.
On the first topic, we shall derive the point spread function as a function of the Seidal
aberrations of the holographic storage system. Then, the probability distribution function of the
output signals will be found, and the corresponding storage capacity and BER can be calculated.
The performance of the holographic system can thus be evalueted, and the influence of the
aberrations can be quantitatively determined.
On the two-wavelength holographic recording, we shall derive the dynamic equations based
on the band-transport model of photorefractive crystals. The dynamic behavior of the hologram
formation and fixing will be computer simulated, and experimentally characterized. We shall
investigate materials for the two-wavelength recording including rare-earth elements-doped BSO
and BTO photorefractive crystals as well as the PQ/PMMA photopolymers which is fabricated in
our laboratory. We shall apply the two-wavelength holograms to design and fabricate a WADM
(wavelength add-drop multiplexer) in DWDM communication systems. Again, the storage
capacity and BER of the two-wavelength holograms will be estimated.
On the feasibility of using computer holograms for a lens-less projection display, we shall
perform a parametric investigation on how the computing algorithms, encoding techniques, and
SLM quality affect the imaging characteristics. A 3D display by use of multiplexed holograms
will also be designed and characterized.
. The methodology of using the system metrics for the design and evaluation of
holographic information systems can be extended to other digital holographic systems.
官方说明文件#: NSC101-2221-E009-112-MY3
URI: http://hdl.handle.net/11536/102431
https://www.grb.gov.tw/search/planDetail?id=8115177&docId=430911
显示于类别:Research Plans