Yuncheng Liu 1†Ke Xu 1†Xuhao Fan 1Xinger Wang 1[ ... ]Hui Gao 1,2,**
Author Affiliations
Abstract
1 Wuhan National Laboratory for Optoelectronics and School of Optical and Electronic Information, Huazhong University of Science and Technology, Wuhan 430074, China
2 Optics Valley Laboratory, Wuhan 430074, China
Interactive holography offers unmatched levels of immersion and user engagement in the field of future display. Despite of the substantial progress has been made in dynamic meta-holography, the realization of real-time, highly smooth interactive holography remains a significant challenge due to the computational and display frame rate limitations. In this study, we introduced a dynamic interactive bitwise meta-holography with ultra-high computational and display frame rates. To our knowledge, this is the first reported practical dynamic interactive metasurface holographic system. We spatially divided the metasurface device into multiple distinct channels, each projecting a reconstructed sub-pattern. The switching states of these channels were mapped to bitwise operations on a set of bit values, which avoids complex hologram computations, enabling an ultra-high computational frame rate. Our approach achieves a computational frame rate of 800 kHz and a display frame rate of 23 kHz on a low-power Raspberry Pi computational platform. According to this methodology, we demonstrated an interactive dynamic holographic Tetris game system that allows interactive gameplay, color display, and on-the-fly hologram creation. Our technology presents an inspiration for advanced dynamic meta-holography, which is promising for a broad range of applications including advanced human-computer interaction, real-time 3D visualization, and next-generation virtual and augmented reality systems.
interactive display meta-holography bitwise operation ultra-high frame rate 
Opto-Electronic Advances
2024, 7(1): 230108
Author Affiliations
Abstract
1 Shandong Inspur Artificial Intelligence Research Institute Company Limited, Jinan 250013, China
2 MIIT Key Laboratory of Photonics Information Technology, School of Optics and Photonics, Beijing Institute of Technology, Beijing 100081, China
Active metasurfaces have recently attracted more attention since they can make the light manipulation be versatile and real-time. Metasurfaces-based holography possesses the advantages of high spatial resolution and enormous information capacity for applications in optical displays and encryption. In this work, a tunable polarization multiplexing holographic metasurface controlled by an external magnetic field is proposed. The elaborately designed nanoantennas are arranged on the magneto-optical intermediate layer, which is placed on the metallic reflecting layer. Since the non-diagonal elements of the dielectric tensor of the magneto-optical material become non-zero values once the external magnetic field is applied, the differential absorption for the left and right circularly polarized light can be generated. Meanwhile, the amplitude and phase can be flexibly modulated by changing the sizes of the nanoantennas. Based on this, the dynamic multichannel holographic display of metasurface in the linear and circular polarization channels is realized via magnetic control, and it can provide enhanced security for optical information storage. This work paves the way for the realization of magnetically controllable phase modulation, which is promising in dynamic wavefront control and optical information encryption.
active metasurface magneto-optical effect polarization multiplexing holography dynamic holographic display 
Chinese Optics Letters
2024, 22(4): 043601
魏平平 1,2韩超 1,2,*
作者单位
摘要
1 安徽工程大学电气工程学院,安徽 芜湖 241000
2 安徽工程大学高端装备先进感知与智能控制教育部重点实验室,安徽 芜湖 241000
以双向误差扩散算法为基础,通过分析图像振幅分布与生成全息图的关系,建立了全息图误差补偿模型,提出了一种新的纯相位全息图生成方法。首先通过误差扩散模型,计算出复振幅全息图与振幅置1的纯相位全息图的误差,通过对该误差进行误差扩散生成新的纯相位全息图。利用新的纯相位全息图与复振幅全息图计算新的误差,进行第二次的误差扩散,得到最终的纯相位全息图。采用定性和定量的指标来评价仿真成像质量,仿真及光学实验结果表明,改进后的方法能够有效提升再现像的质量,为纯相位全息图制作提供一种新的方法。
全息 全息显示 误差扩散 纯相位全息图 
光学学报
2024, 44(8): 0809001
Author Affiliations
Abstract
1 University of Shanghai for Science and Technology, School of Optical-Electrical and Computer Engineering, Engineering Research Center of Optical Instrument and System, Ministry of Education and Shanghai Key Laboratory of Modern Optics System, Shanghai, China
2 Beihang University, School of Instrumentation and Optoelectronic Engineering, Beijing, China
Holographic display stands as a prominent approach for achieving lifelike three-dimensional (3D) reproductions with continuous depth sensation. However, the generation of a computer-generated hologram (CGH) always relies on the repetitive computation of diffraction propagation from point-cloud or multiple depth-sliced planar images, which inevitably leads to an increase in computational complexity, making real-time CGH generation impractical. Here, we report a new CGH generation algorithm capable of rapidly synthesizing a 3D hologram in only one-step backward propagation calculation in a novel split Lohmann lens-based diffraction model. By introducing an extra predesigned virtual digital phase modulation of multifocal split Lohmann lens in such a diffraction model, the generated CGH appears to reconstruct 3D scenes with accurate accommodation abilities across the display contents. Compared with the conventional layer-based method, the computation speed of the proposed method is independent of the quantized layer numbers, and therefore can achieve real-time computation speed with a very dense of depth sampling. Both simulation and experimental results validate the proposed method.
computer holography holographic display diffraction calculation 
Advanced Photonics Nexus
2024, 3(3): 036001
Author Affiliations
Abstract
1 Southern University of Science and Technology, Department of Materials Science and Engineering, Shenzhen, China
2 Southern University of Science and Technology, Shenzhen Institute for Quantum Science and Engineering, Shenzhen, China
3 Southern University of Science and Technology, Institute for Applied Optics and Precision Engineering, Shenzhen, China
4 Southern University of Science and Technology, Guangdong Provincial Key Laboratory of Functional Oxide Materials and Devices, Shenzhen, China
Optical metasurfaces, which consist of subwavelength scale meta-atoms, represent a novel platform to manipulate the polarization and phase of light. The optical performance of metasurfaces heavily relies on the quality of nanofabrication. Retrieving the Jones matrix of an imperfect metasurface optical element is highly desirable. We show that this can be realized by decomposing the generalized Jones matrix of a meta-atom into two parallel ones, which correspond to the ideal matrix and a phase retardation. To experimentally verify this concept, we designed and fabricated metasurface polarizers, which consist of geometric phase-controlled dielectric meta-atoms. By scanning the polarization states of the incident and transmitted light, we are able to extract the coefficients of the two parallel matrices of a metasurface polarizer. Based on the results of the Jones matrix decomposition, we also demonstrated polarization image encryption and spin-selective optical holography. The proposed Jones matrix retrieval protocol may have important applications in computational imaging, optical computing, optical communications, and so on.
metasurface polarizer Jones matrix optical holography 
Advanced Photonics Nexus
2024, 3(2): 026005
杨晨遇 1王骏 1,*张川 1周浩 1[ ... ]华灯鑫 1
作者单位
摘要
1 西安理工大学机械与精密仪器工程学院,陕西 西安 710048
2 陕西省人工影响天气中心,陕西 西安 710016
冰晶是云滴谱的重要组成部分,其对全球辐射收支平衡、全球气候变化、水文循环、人工影响天气作业等具有重要的影响。目前2~100 μm的冰晶与液滴混合相态难以区分,且存在难以提供冰晶微物理参数的瓶颈问题。针对这两个问题,本文基于数字全息理论,利用全域数字图像融合方法、局部亮度梯度方差法和旋转卡壳法,结合固液相粒子圆度概念,实现了云中液滴和冰晶的混合相态识别,在特定圆度阈值下,液滴和冰晶的识别率大于93%;再结合光学图像识别技术,获得冰晶粒子的面积、周长、凸包和最小外接矩形数据;最终利用上述数据获得了冰晶微物理参数。通过在低温云室中的观测实验,获取了板状、枝状和六角冰晶的微物理参数,该方法解决了冰晶观测中的瓶颈问题。此外,通过冰晶采样间隔时间和不同时刻的质心三维坐标和等效直径,还可获得冰晶粒子的三维运动速度与轨迹。该方法对提升数值天气预报精确度,以及人工影响天气作业具有重大意义。
数字全息 粒子相态识别 冰晶 粒子速度 
光学学报
2024, 44(6): 0601017
作者单位
摘要
1 昆明理工大学理学院,云南 昆明 650500
2 昆明理工大学云南省高校现代信息光学重点实验室,云南 昆明 650500
针对较大尺寸物体彩色全息图重建操作复杂、色彩融合不准确、重建时受零级影响等问题,提出一种基于深度学习的彩色全息图重建方法。采用改进的U-Net模型作为网络结构,使用混合实际拍摄和模拟生成的彩色离轴菲涅耳全息图频谱作为训练样本,实现对彩色全息图的准确重建。对模拟全息图和实际拍摄的数字全息图进行重建实验,结果表明,所提方法相较于传统方法,能够在保持重建图像高分辨率和颜色准确性的同时,具有更好的重建效果。研究结果可应用于大尺寸检测场彩色全息图的重建,为彩色全息检测及深度学习在光学成像领域中的应用提供有益的参考。
数字全息 深度学习 彩色全息重建 全息频谱 
激光与光电子学进展
2024, 61(8): 0809001
作者单位
摘要
天津大学海洋科学与技术学院,天津 300072
水下邻域声场的高精度重建对研究分析邻域声场结构特点和提升水声传感性能有重要意义。在激光束宽度远小于声波波长的条件下,激光束穿过声场的偏转效应既携带了声场声压信息,也携带了梯度信息,这为直接引入Kirchhoff积分定理进行声场重建计算提供了数据传感基础。在此基础上,利用激光传感声场的稠密性,引入虚拟扩展声场孔径的计算方法,进一步接近了Kirchhoff积分定理对无穷大积分区间的理论要求。在水下邻域空间,对提出的声场重建思路和方法进行了验证。实验结果表明,与直接进行声全息的方法相比,所提声场重建方法的峰值信噪比提高了约5.5 dB,为高精度邻域声场传感器的开发提供了可行新思路。
激光偏转 光学声场重建 声全息 边界延拓 
激光与光电子学进展
2024, 61(5): 0501003
作者单位
摘要
1 中国科学院长春光学精密机械与物理研究所,吉林 长春 130033
2 中国科学院大学,北京 100049
数字全息显微镜(DHM)可以对生物样本的复杂波前进行数值重建,但是物体波前存在二次相位畸变和高阶像差,使得成像物体存在一定的相位像差。基于此,提出一种基于径向基神经网络(RBF)的相位畸变补偿算法。使用RBF网络构建非线性函数,最小化损失函数来估算物体的实际相位,损失函数考虑了全息面和RBF网络的输出。在仿真中以原模型为基准计算全局的均方误差,所提算法的均方误差为0.0374,主成分分析法(PCA)的为0.0470,频谱质心法(SCM)的为0.3303。搭建DHM系统用于HL60细胞的成像幅度和相位对比度观察,结果显示,所提算法能够更好地消除载波频率和相位畸变。所提算法无需了解光学参数,且可以通过调整采样点数量控制计算时间和插值精度,在弱散射物体或微纳结构三维形态测量中具有潜在的应用前景。
数字全息 相位恢复 波前误差 径向基神经网络 
激光与光电子学进展
2024, 61(4): 0411002
作者单位
摘要
1 清华大学深圳国际研究生院,广东 深圳 518055
2 西北工业大学物理科学与技术学院,陕西 西安 710072
3 西北工业大学深圳研究院,广东 深圳 518063
在数字全息粒子场成像中,粒子衍射的孔径角很小,重构时具有很长的焦深,造成轴向定位精度远低于横向定位精度。增大照明波长,相当于增大粒子孔径角,因此可得到更高的轴向定位精度。采用红外相干光源照明粒子场,在不提升算法和系统复杂度的前提下提升数字全息粒子场重构的轴向定位精度。从理论上分析数字全息粒子场重构中焦深与轴向定位精度的关系,并分别仿真分析绿光、红光及红外光照明时的粒子场全息重构,分别开展了基于这3种光源的聚苯乙烯微球粒子场全息成像实验。仿真和实验结果研究表明,相比红光,红外光源使焦深减小了约19%,而相比绿光,焦深减小了约39%。增加波长可以减弱离焦像的层间干扰,从而提高了轴向定位精度。
数字全息 粒子场 红外光 轴向定位精度 
激光与光电子学进展
2024, 61(2): 0211022

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