用于全息数据存储的新型光聚合物材料

A. Tork, P. Pilot, T. Galstian
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引用次数: 6

摘要

光聚合物材料具有显著的优势,使其适合应用于全息数据存储介质。它们提供相位全息图,这是非常有吸引力的,因为它们可以实现非常高的衍射效率。通常需要用不同的激光源提供全息记录的原位记录。衍射光学元件(DOEs)引起了人们的极大兴趣,全息光聚合物分散液晶(H-PDLC)在这些应用中具有很大的前景。最近,这类材料已被敏化到对近红外区域的光敏感。表征这些材料是一个重要的挑战,可以导致更好地理解全息光栅形成光化学过程。为了制造更高效的do,这些步骤是重要的。由于这些材料具有自显影特性(通过自由基光聚合),因此可以在记录时监测衍射效率的增长曲线。我们对光聚合物的全息记录特性很感兴趣,包括衍射效率(在透射和反射模式下)、调制传递函数、灵敏度、记录线性度、收缩率、稳定性等。有关细节将在会议上报告。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
New photopolymer materials for holographic data storage
Photopolymer materials have significant advantages making them suitable for applications as holographic data storage media. They provide phase holograms, which are very attractive since they can achieve very high diffraction efficiency. It is often desirable to provide an in-situ recording of holographic recording with different lasers sources. Diffractive optical elements (DOEs) attract great interest and holographic photopolymer dispersed liquid crystals (H-PDLC) are emerging as very promising for these applications. Recently, such materials have been sensitized to be sensitive in the near infrared region of light. The characterization of these materials is an important challenge that can result in a better understanding of the holographic grating formation photochemical process. These steps are important in order to reach the fabrication of more efficient DOEs. Since, these materials have self-developing properties (via free radical photopolymerization), the growth curve of the diffraction efficiency can be monitored as it is being recorded. We are interested in (and we actually study) holographic recording characteristics of our photopolymers, which include diffraction efficiency (in transmission and reflection modes), modulation transfer function, sensitivity, recording linearity, shrinkage, stability, etc. The corresponding details will be reported at the conference meeting.
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