Author Affiliations
Abstract
Wuhan National Laboratory for Optoelectronics, Huazhong University of Science and Technology, Wuhan 430074, China
The ongoing quest for higher data storage density has led to a plethora of innovations in the field of optical data storage. This review paper provides a comprehensive overview of recent advancements in next-generation optical data storage, offering insights into various technological roadmaps. We pay particular attention to multidimensional and superresolution approaches, each of which uniquely addresses the challenge of dense storage. The multidimensional approach exploits multiple parameters of light, allowing for the storage of multiple bits of information within a single voxel while still adhering to diffraction limitation. Alternatively, superresolution approaches leverage the photoexcitation and photoinhibition properties of materials to create diffraction-unlimited data voxels. We conclude by summarizing the immense opportunities these approaches present, while also outlining the formidable challenges they face in the transition to industrial applications.
optical data storage multidimensional data storage nanogratings superresolution data storage 
Chinese Optics Letters
2023, 21(12): 120051
作者单位
摘要
1 光电材料与技术国家重点实验室,中山大学物理与天文学院,中山大学物理学院,广东 广州 510275
2 汕头大学理学院物理系,广东 汕头 515063
人类社会正处于信息爆炸的大数据时代,迅速膨胀的数据在持续高速增加,需要越来越大的存储容量来承载。高密度光存储技术具有非接触、抗电磁干扰、存储密度高等优点,为更好地存储、处理、分析每天产生的海量数据提供了优质方案。然而,光储存记录点的尺寸受到衍射极限的限制,传统光存储技术的存储密度难以大幅提升。近年来,随着多参量光场调控技术的发展,高数值孔径物镜聚焦下的结构化光场有了更新颖的结构、更丰富的维度和更小的尺寸,为高密度光存储提供了更多选择。本文将综述光场调控技术在紧聚焦焦场上的最新成果,介绍实现空间紧聚焦焦场的理论设计、模拟、实验、高效生成器件和应用。这些成果将会更好地服务于高密度光存储技术的研究与应用。
光数据存储 衍射极限 光场调控 紧聚焦 光学超振荡 超构透镜 
中国激光
2023, 50(18): 1813012
宋海洋 1,2李枷楠 1,2范琳琳 1,2林达奎 1,2,*[ ... ]谭小地 1,2,**
作者单位
摘要
1 福建师范大学光电与信息工程学院医学光电科学与技术教育部重点实验室,福建 福州 350117
2 福建师范大学光电与信息工程学院福建省光子技术重点实验室,福建 福州 350117
通过调制具有不同编码单元的参考光,对信息光进行分页式加密存储。提出两种参考光编码加密模式,即扇形参考光编码模式和随机位置参考光编码模式,并对这两种方法进行验证。实验结果表明,这两种方式都通过正交相位编码完成加密解密的过程。对两种方法的加密性进行评估,不同密钥对应的加密信息之间的相似度均值分别为0.57和0.02,均方误差的平均值分别为537和1872。随机位置参考光编码模式下的同轴系统安全性更高。正交相位加密技术可以有效地防止存储数据被非法访问和窃取,保证了数据的安全性。
全息 全息数据存储 同轴系统 正交相位 加密 
中国激光
2023, 50(18): 1813017
朱宸 1邵正龙 1周英杰 1任佳琪 1[ ... ]汤东亮 1,2,**
作者单位
摘要
1 湖南大学物理与微电子科学学院微纳光电器件及应用教育部重点实验室,湖南 长沙 410082
2 湖南大学粤港澳大湾区创新研究院,广东 广州 511300
液晶作为一种介于液态与结晶态之间的功能性软材料,可以同时表现出液体流动性和晶体的各向异性,被广泛应用于图像显示、集成光电子学、光通信等领域。近年来,由于液晶理论研究的深入及其加工技术的发展,液晶在几何相位、动态可调谐等光场调控方面的优势推动了光学器件的平面化、集成化、智能化和小型化。综述了液晶在光场调控方面的最新应用进展,具体讨论了其对光波振幅、相位、偏振等多维度参数的调控特性,进而探讨了液晶在多功能光学器件和光学加密系统中的应用。
光数据存储 液晶 光场调控 各向异性 几何相位 多功能 光学加密 
中国激光
2023, 50(18): 1813006
作者单位
摘要
1 福建师范大学光电与信息工程学院,福建 福州 350117
2 中国计量科学研究院,北京 100029
3 河北民族师范学院化学与化工学院,河北 承德 067000
4 西安电子科技大学光电工程学院,陕西 西安 710071
大数据时代对数据存储提出了新的要求,为克服目前存储技术无法逾越的障碍,全息存储回到人们的视野,为了解决传统全息存储的记录密度与理论值相差较大的问题,本文作者团队提出了将光的振幅、相位和偏振均作为调制变量的多维调制全息数据存储技术;为验证多维调制的实验结果,针对具有偏振响应的全息存储材料特性提高方面也开展了研究。这些研究成果加速了全息存储技术应用的产业化步伐。本文以该团队在北京理工大学期间开展的多维调制全息数据存储技术的研究成果为基础,分别从光的振幅、相位和偏振调制机理出发,综述了各个调制方法的理论基础和应用实例,以及提高全息存储材料性能的有效手段,最后进行了总结和展望。
全息存储 多维调制 大数据保存 存储密度 
光学学报
2023, 43(15): 1500004
Author Affiliations
Abstract
1 College of Photonic and Electronic Engineering, Key Laboratory of Opto-Electronic Science and for Medicine of Ministry of Education, Fujian Provincial Key Laboratory of Photonics Technology, Fujian Provincial Engineering Technology Research Center of Photoelectric Sensing Application, Fujian Normal University, Fuzhou 350117, China
2 Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
3 HolyMine Corporation, 2032-2-301 Ooka, Numazu, Shizuoka 410-0022, Japan
To increase the storage capacity in holographic data storage (HDS), the information to be stored is encoded into a complex amplitude. Fast and accurate retrieval of amplitude and phase from the reconstructed beam is necessary during data readout in HDS. In this study, we proposed a complex amplitude demodulation method based on deep learning from a single-shot diffraction intensity image and verified it by a non-interferometric lensless experiment demodulating four-level amplitude and four-level phase. By analyzing the correlation between the diffraction intensity features and the amplitude and phase encoding data pages, the inverse problem was decomposed into two backward operators denoted by two convolutional neural networks (CNNs) to demodulate amplitude and phase respectively. The experimental system is simple, stable, and robust, and it only needs a single diffraction image to realize the direct demodulation of both amplitude and phase. To our investigation, this is the first time in HDS that multilevel complex amplitude demodulation is achieved experimentally from one diffraction intensity image without iterations.
holographic data storage complex amplitude demodulation deep learning computational imaging 
Opto-Electronic Advances
2023, 6(3): 220157
Author Affiliations
Abstract
Long-term optical data storage (ODS) technology is essential to break the bottleneck of high energy consumption for information storage in the current era of big data. Here, ODS with an ultralong lifetime of 2×107 years is attained with single ultrafast laser pulse induced reduction of Eu3+ ions and tailoring of optical properties inside the Eu-doped aluminosilicate glasses. We demonstrate that the induced local modifications in the glass can stand against the temperature of up to 970 K and strong ultraviolet light irradiation with the power density of 100 kW/cm2. Furthermore, the active ions of Eu2+ exhibit strong and broadband emission with the full width at half maximum reaching 190 nm, and the photoluminescence (PL) is flexibly tunable in the whole visible region by regulating the alkaline earth metal ions in the glasses. The developed technology and materials will be of great significance in photonic applications such as long-term ODS.Long-term optical data storage (ODS) technology is essential to break the bottleneck of high energy consumption for information storage in the current era of big data. Here, ODS with an ultralong lifetime of 2×107 years is attained with single ultrafast laser pulse induced reduction of Eu3+ ions and tailoring of optical properties inside the Eu-doped aluminosilicate glasses. We demonstrate that the induced local modifications in the glass can stand against the temperature of up to 970 K and strong ultraviolet light irradiation with the power density of 100 kW/cm2. Furthermore, the active ions of Eu2+ exhibit strong and broadband emission with the full width at half maximum reaching 190 nm, and the photoluminescence (PL) is flexibly tunable in the whole visible region by regulating the alkaline earth metal ions in the glasses. The developed technology and materials will be of great significance in photonic applications such as long-term ODS.
ultrafast laser photoluminescence tailoring ultralong lifetime optical data storage 
Opto-Electronic Advances
2023, 6(1): 220008
Author Affiliations
Abstract
1 Photonic Integrated Circuits Center, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
3 Engineering Research Center of Optical Instrument and Systems, Ministry of Education, and Shanghai Key Laboratory of Modern Optical System, University of Shanghai for Science and Technology, Shanghai 200093, China
A kind of optical data storage medium based on electron-trapping materials, Y3Al5O12:Ce3+ fluorescent ceramic, was developed by vacuum sintering technology. The medium shows sufficiently deep traps (1.67 and 0.77 eV). The properties of trap levels were researched by thermoluminescence curves, and the optical storage mechanism based on Ce3+ ion doping was proposed. More importantly, the data can be written-in by 254 nm UV light, and readout by heating (300°C). This work expands the application fields of fluorescent ceramics, and it is expected to promote the development of electron-trapping materials.
electron-trapping materials optical data storage Y3Al5O12 Ce3+ doping 
Chinese Optics Letters
2023, 21(4): 041602
曹恩豪 1,2,*周大成 1,2刘营 1,2杨勇 1,2[ ... ]邱建备 1,2
作者单位
摘要
1 昆明理工大学材料科学与工程学院, 昆明 650093
2 云南省新材料制备与加工重点实验室, 昆明 650033
CsPbX3 (X=Cl, Br, I)量子点微晶玻璃集CsPbX3量子点出众的光学性能和玻璃良好的物化性能于一体, 在光学数据存储、随机激光、X射线成像、照明显示、太阳能电池、光催化等领域有重要应用价值。本文概述了其制备加工以及相对应的性能应用的最新进展, 如利用飞秒激光加工在玻璃中指定区域析出CsPbX3用作光学数据存储, 以此刻画其组成-结构-性能之间关系与变化规律。不过, 其在未来的研究中仍面临诸多挑战, 如CsPbX3在玻璃基质中的原位生长机理并不完全清楚, 对CsPbX3前驱体在“玻璃微反应器”中的赋存状态、近邻结构和分布形态的研究将有助于进一步认识CsPbX3在玻璃中的形成机理, 为获得光学性能更好的CsPbX3量子点微晶玻璃提供理论指导。
量子点 微晶玻璃 玻璃体系 玻璃网络 拓扑结构 钙钛矿 析晶 光学数据存储 quantum dot glass-ceramic glass glass network topology perovskite crystallization optical data storage 
硅酸盐学报
2022, 50(4): 1132
作者单位
摘要
1 Information Photonics Research Center, College of Photonic and Electronic Engineering, Fujian Normal University, Fuzhou 350117, China
2 Fujian Provincial Key Laboratory of Photonics Technology, Fuzhou 350117, China
3 Key Laboratory of OptoElectronic Science and Technology for Medicine of Ministry of Education, Fuzhou 350117, China
4 Wuhan National Laboratory for Optoelectronics, Wuhan 430074, China
Embedded data are used to retrieve phases quicker with high accuracy in phase-modulated holographic data storage (HDS). We propose a method to design an embedded data distribution using iterations to enhance the intensity of the high-frequency signal in the Fourier spectrum. The proposed method increases the antinoise performance and signal-to-noise ratio (SNR) of the Fourier spectrum distribution, realizing a more efficient phase retrieval. Experiments indicate that the bit error rate (BER) of this method can be reduced by a factor of one after 10 iterations.
holographic data storage (HDS) phase retrieval embedded data high frequency 
Frontiers of Optoelectronics
2021, 14(4): 529–539

关于本站 Cookie 的使用提示

中国光学期刊网使用基于 cookie 的技术来更好地为您提供各项服务,点击此处了解我们的隐私策略。 如您需继续使用本网站,请您授权我们使用本地 cookie 来保存部分信息。
全站搜索
您最值得信赖的光电行业旗舰网络服务平台!