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Liquid crystals for holographic optical data storage

机译:用于全息光学数据存储的液晶

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A tutorial review is presented to inform and inspire the reader to develop and integrate strong scientific links between liquid crystals and holographic data storage, from a materials scientist's viewpoint. The principle of holographic data storage as a means of providing a solution to the information storage demands of the 21st century is detailed. Holography is a small subset of the much larger field of optical data storage and similarly, the diversity of materials used for optical data storage is enormous. The theory of polarisation holography which produces holograms of constant intensity, is discussed. Polymeric liquid crystals play an important role in the development of materials for holographic storage and photoresponsive materials based on azobenzene are targeted for discussion due to their ease of photo-reversion between trans- and cis-states. Although the final polymer may not be liquid crystalline, irradiation can induce ordered domains. The mesogens act in a co-operative manner, enhancing refractive indices and birefringences. Surface relief gratings are discussed as a consequence of holographic storage. Cholesteric polymers comprising azobenzene are briefly highlighted. Irradiation causing cis-trans-isomerisation can be used to control helix pitch. A brief mention of liquid crystals is also made since these materials may be of future interest since they are optically transparent and amenable to photo-induced anisotropy.
机译:从材料科学家的角度出发,本文将进行教程复习,以告知和启发读者发展和整合液晶与全息数据存储之间的牢固科学联系。详细介绍了全息数据存储的原理,可以为21世纪的信息存储需求提供解决方案。全息术是光学数据存储领域的一小部分,同样,光学数据存储所用材料的多样性也很大。讨论了产生恒定强度全息图的偏振全息术的理论。聚合物液晶在全息存储材料的开发中起着重要作用,基于偶氮苯的光敏材料因其易于在反式和顺式之间进行光还原而成为讨论的对象。尽管最终的聚合物可能不是液晶的,但辐照会诱导有序畴。液晶元以合作的方式起作用,增强了折射率和双折射。由于全息存储,讨论了表面起伏光栅。简要强调了包含偶氮苯的胆甾型聚合物。引起顺反异构化的辐射可用于控制螺旋螺距。还对液晶进行了简要提及,因为这些材料是光学透明的并且易于光致各向异性,因此可能会引起未来的关注。

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