郑奉禄 1,2余俊杰 1,3,*朱镕威 1,3马国庆 1,3张军勇 3,4,**
作者单位
摘要
1 中国科学院上海光学精密机械研究所光芯片集成研发中心,上海 201800
2 上海科技大学,上海 201210
3 中国科学院大学,北京 100049
4 中国科学院上海光学精密机械研究所高功率激光物理联合实验室,上海 201899
提出了一种用高阶抑制二维达曼光栅作为分光元件替代普通衍射光栅实现微透镜阵列焦距快速测量的方法。高阶抑制二维达曼光栅具有优良的分光效果,且高阶衍射级次能够得到有效抑制,通过信噪比的提高降低焦距测量误差。设计并制备了一分五的高阶抑制二维达曼光栅,分束后的光束经过微透镜,在其焦面附近形成高对比聚焦光斑阵列。相比常规一维光栅,所提方法通过测量每个微透镜焦面内光斑两两之间的距离,得到多个焦距值,从而有效减少测量的随机误差。实验结果表明,该方案对微透镜阵列焦距的单次测量误差小于3.5%,重复测量误差在4.5%之内。该方案对微透镜阵列的焦距分布快速评估具有实用价值。
测量 高阶抑制达曼光栅 微透镜阵列 焦距测量 
中国激光
2024, 51(6): 0604004
马国庆 1,2周常河 3,*朱镕威 1,2郑奉禄 1,2[ ... ]司徒国海 1,2,***
作者单位
摘要
1 中国科学院上海光学精密机械研究所信息光学与光电技术实验室,上海 201800
2 中国科学院大学材料与光电学院,北京 100049
3 暨南大学光子技术研究院,广东 广州 510632
受益于光子独特的优势,光计算技术在构建高速、高算力和高能效比的专用计算加速器方面被寄予厚望,目前已经涌现出了许多极具吸引力的方案。特别是对于涉及运算量巨大的二维矩阵-矩阵乘加操作的专用场景,光计算有望在算力和能效比等方面实现超越当前最先进电子计算机几个数量级的性能提升。不同于电子计算通过构建逻辑门实现通用数字计算,主要受深度学习驱动而复兴的光计算更倾向于模拟计算。本文从模拟和数字光计算的角度出发对主流的光计算架构进行分析和讨论,指出了目前光计算技术发展面临的瓶颈,并对光计算未来的发展趋势进行了展望。
光计算 模拟光计算 数字光计算 光计算架构 光学矩阵计算 光学神经网络 光电智能计算 光学信号处理 
中国激光
2023, 50(5): 0500001
Author Affiliations
Abstract
1 Laboratory of Information Optics and Optoelectronic Technology, 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 e-mail: Junjiey@siom.ac.cn
Recentlycorresponding author guidelines for details."?>, optical computing has emerged as a potential solution to computationally heavy convolution, aiming at accelerating various large science and engineering tasks. Based on optical multi-imaging–casting architecture, we propose a paradigm for a universal optical convolutional accelerator with truly massive parallelism and high precision. A two-dimensional Dammann grating is the key element for generating multiple displaced images of the kernel, which is the core process for kernel sliding on the convolved matrix in optical convolutional architecture. Our experimental results indicate that the computing accuracy is typically about 8 bits, and this accuracy could be improved further if high-contrast modulators are used. Moreover, a hybrid analog–digital coding method is demonstrated to improve computing accuracy. Additionally, a convolutional neural network for the standard MNIST dataset is demonstrated, with recognition accuracy for inference reaching 97.3%. Since this architecture could function under incoherent light illumination, this scheme will provide opportunities for handling white-light images directly from lenses without photoelectric conversion, in addition to convolutional accelerators.
Photonics Research
2023, 11(2): 299
Author Affiliations
Abstract
1 Laboratory of Information Optics and Optoelectronic Technology, 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 Institute of Photonics Technology, Jinan University, Guangzhou 510000, China
A planar-integrated optical system (PIOS) represents powerful optical imaging and information processing techniques and is a potential candidate for the realization of a three-dimensional (3D) integrated optoelectronic intelligent system. Coupling the optical wave carrying information into a planar transparent substrate (typically fused silica) is an essential prerequisite for the realization of such a PIOS. Unlike conventional grating couplers for nano-waveguides on the silicon-on-insulator platform, the grating couplers for PIOS enable to obtain a higher design freedom and to achieve much higher coupling efficiency. By combining the rigorous coupled wave algorithm and simulated annealing optimization algorithm, a high-efficiency asymmetric double-groove grating coupler is designed for PIOS. It is indicated that, under the condition of the normal incidence of TE polarization, the diffraction efficiency of the -1st order is over 95%, and its average value is 97.3% and 92.8% in the C and C+L bands. The simulation results indicate that this type of grating coupler has good tolerance and is expected to be applied in optical interconnections, waveguide-based augmented reality glasses, and planar-integrated 3D interconnection optical computing systems.
double-groove grating vertical coupling planar integration optical computing 
Chinese Optics Letters
2022, 20(9): 090501
作者单位
摘要
1 中国科学院上海光学精密机械研究所信息光学与光电技术实验室, 上海 201800
2 中国科学院大学材料与光电研究中心, 北京 100049
基于严格耦合波分析方法和模拟退火优化算法,设计了一种在正入射条件下具有宽入射波长和角度范围的偏振无关高效率多层倾斜光栅。为了提高衍射效率和带宽范围,提出了一种折射率渐变的四层三明治光栅结构。基于这种结构,设计了一种可见光波长范围内偏振无关异常反射光栅器件。数值结果表明,正入射下,该光栅具有130 nm(550~680 nm)的波长带宽,在此范围内-1级衍射效率均高于93%,同时偏振相关损耗均小于0.2 dB。此外,这种光栅结构还具有47°(-2°~45°)的入射角度带宽,以及较大的制造容差范围。因此,本文提出的这种多层斜光栅在虚拟现实和增强现实显示系统、基于超表面的器件,特别是可见光波段的超透镜等方面具有潜在的应用价值。
光栅 倾斜光栅 异常反射 偏振无关 正入射 宽带 
光学学报
2020, 40(14): 1405001
Author Affiliations
Abstract
1 Laboratory of Information Optics and Optoelectronic Technology, 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
An encapsulated metal-dielectric reflective grating is presented for broadband polarization-independent two-port beam splitting under normal incidence at the central wavelength of 800 nm. Different from traditional two-port grating splitters in the resonant region, this grating splitter is capable of separating light energy into ±1st orders with high efficiency in a broad waveband for both TE and TM polarizations. A unified method is proposed here for designing this grating splitter, which enables one to choose a grating structure quickly to realize an ultrabroad working waveband. The simulation results indicate that a bandwidth of 46.4 nm could be achieved for diffraction efficiency (defined as the ratio of the light energy diffracted only at the first order to the incident light energy) over 46% at the central wavelength of 800 nm. Moreover, the parameters of the grating structure can be flexibly adjusted with wavelengths using the unified method for various other applications, such as augmented reality, optical interconnections for computing, coherent beam combination, and complex vector beam shaping.
diffractive optics resonant grating polarization independence unified design method 
Chinese Optics Letters
2020, 18(7): 070501
Author Affiliations
Abstract
1 Laboratory of Information Optics and Opto-electronic Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China
3 University of Chinese Academy of Sciences, Beijing 100049, China
4 Department of Physics, Zhejiang University of Science and Technology, Hangzhou 310023, China
5 e-mail: Junjiey@siom.ac.cn
6 e-mail: chazhou@mail.shcnc.ac.cn
Perfect optical vortices (POVs) provide a solution to address the challenge induced by strong dependence of classical optical vortices on their carried topological charges. However, traditional POVs are all shaped into bright rings with a single main lobe along the radial direction. Here we propose a method for enhanced control on the ring profile (the radial intensity profile of circular rings) of POVs based on modulated circular sine/cosine radial functions, which is realized by a circular Dammann grating embedded with a spiral phase. Specifically, a type of “absolute” dark POVs surrounded by two bright lobe rings in each side is presented, which provides a perfect annular potential well along those dark impulse rings for trapping low-index particles, cells, or quantum gases. In addition, several POVs with different ring profiles, including conventional POVs with bright rings, the dark POVs mentioned above, and also POVs with tunable ring profiles, are demonstrated. This work opens up new possibilities to controllably tune the ring profile of perfect vortices, and this type of generalized POVs will enrich the content of singular optics and expand the application scope of perfect vortices in a range of areas including optical manipulation, both quantum and classical optical communications, enhanced optical imaging, and also novel structured pumping lasers.
Photonics Research
2020, 8(5): 05000648
Author Affiliations
Abstract
1 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
The excitation of high-order Laguerre–Gaussian (LG) modes in a neodymium-doped yttrium aluminum garnet (Nd:YAG) laser resonator was presented by applying the diffraction of a second-order circular Dammann grating (CDG) for annular pumping. In the study, the 808 nm pump light was shaped into a double-ring structure by the CDG and matched spatially with that of an ideal LG11 mode. As a result, the laser resonator generated an LG11 vortex mode, and the laser power reached 204 mW with 14.5% slope efficiency. Also, when the cavity mirror was tilted, the laser output could switch to the LG01 vortex mode. The results showed the convenience and versatility of CDG in an annular-pumped vortex laser.
140.3580 Lasers, solid-state 140.3480 Lasers, diode-pumped 050.1950 Diffraction gratings 
Chinese Optics Letters
2019, 17(5): 051402
宋思雨 1,2李中梁 1,2,*高云华 2,3余俊杰 1[ ... ]王向朝 1,2
作者单位
摘要
1 中国科学院上海光学精密机械研究所信息光学与光电技术实验室, 上海 201800
2 中国科学院大学, 北京 100049
3 中国科学院理化技术研究所光化学转换与功能材料重点实验室, 北京 100190
微针经皮给药结合了注射和经皮给药两者的优势,可提高大分子药物的经皮吸收量,对皮肤几乎无损害,因此具有良好的应用前景。然而,此技术仍处于发展阶段,需要利用成像手段对微针刺入皮肤的深度、药物颗粒的吸收/释放行为等进行研究。利用圆环达曼光栅产生的贝塞尔光束照射样品,搭建了一套扫频光学相干层析成像(OCT)系统。该系统能够在更长的焦深范围内保持高的横向分辨率,实测系统的有效焦深为1.68 mm,共焦位置附近的横向分辨率为3.61 μm,满足微针经皮给药的成像要求。利用搭建的系统对可溶性微针刺入皮肤前后进行成像,能够清晰地看到微针的边缘、刺入深度和在皮肤上留下的微通道,并观察到了微针在皮肤内的溶解过程。
医用光学 扫频光学相干层析成像 微针经皮给药 贝塞尔光束 圆环达曼光栅 
中国激光
2018, 45(8): 0807001
作者单位
摘要
中国科学院上海光学精密机械研究所, 上海 201800
研究了圆环达曼光栅(CDG)整形的环形光抽运的声光调Q Nd:YAG激光器。该激光器的腔体由激光晶体、声光调制器以及平面输出耦合镜组成。所用抽运源为光纤耦合808 nm半导体激光器,其发射光经过CDG发生一级衍射,产生的环形光场强度分布用于端面抽运Nd:YAG激光晶体。实验获得了高光束质量、线偏振、且具有螺旋相位的主动调Q脉冲光输出。当吸收抽运功率为5.6 W、声光调制器工作频率为5 kHz时,激光脉冲的平均功率为470 mW,峰值功率达到588 W,脉冲宽度为160 ns。
激光器 声光调Q 圆环达曼光栅 光束整形 涡旋光 
中国激光
2016, 43(6): 0601002

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