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利用基于硅基空间光调制器的仅单相液晶实现光数据存储的光偏振高效动态控制方法。

Efficient dynamic control method of light polarization using single phase-only liquid crystal on silicon spatial light modulators for optical data storage.

作者信息

Hong Jintao, Li Jin, Chu Daping

出版信息

Appl Opt. 2022 Feb 10;61(5):B34-B42. doi: 10.1364/AO.443205.

Abstract

The technology of five-dimensional (5D) optical data storage in transparent materials paves a promising way to unlimited lifetime data storage for future cloud use. Phase-only liquid-crystal-on-silicon spatial light modulators (LCOS SLMs) have already exhibited its potential for this application in tailoring ultrafast laser writing beams for 5D optical data storage. A phase-only LCOS SLM can generate arbitrary data patterns by using diffractive holographic imaging for data writing light beam generation. However, the polarization control of the output holographic image is still achieved by using an external polarization modulator, which leads to complications, bulkiness, and large delays in current methods. In this paper, we presented an efficient phase and polarization modulation method through a compact system based on a single phase-only LCOS SLM to simultaneously control both the holographic image and its polarization state. The proposed method utilizes two-polarization-component coding in conjunction with a polarization component rotation technique in a compact system. Using this polarization rotation technique, two light components can be independently coded by separately using two holograms on two halves of the LCOS SLM. We experimentally construct a proof-of-concept prototype of the compact system, and the effectiveness of the system has been experimentally verified.

摘要

透明材料中的五维(5D)光学数据存储技术为未来云应用中实现无限寿命的数据存储铺平了一条充满希望的道路。纯相位硅基液晶空间光调制器(LCOS SLM)在为5D光学数据存储定制超快激光写入光束方面已经展现出了其在该应用中的潜力。纯相位LCOS SLM可以通过使用衍射全息成像来生成数据写入光束,从而产生任意的数据图案。然而,目前通过使用外部偏振调制器来实现输出全息图像的偏振控制,这导致了当前方法存在复杂性、体积庞大以及较大延迟等问题。在本文中,我们提出了一种通过基于单个纯相位LCOS SLM的紧凑系统实现的高效相位和偏振调制方法,以同时控制全息图像及其偏振状态。所提出的方法在紧凑系统中结合了双偏振分量编码和偏振分量旋转技术。利用这种偏振旋转技术,两个光分量可以通过分别在LCOS SLM的两半部分上使用两个全息图来独立编码。我们通过实验构建了该紧凑系统的概念验证原型,并且该系统的有效性已经通过实验得到了验证。

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