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High-efficiency RGB achromatic liquid crystal diffractive optical elements 被引量:1
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作者 Yuqiang Ding Xiaojin Huang +2 位作者 Yongziyan Ma Yan Li Shin-Tson Wu 《Opto-Electronic Advances》 2025年第3期4-15,共12页
Liquid crystal Pacharatnam-Berry phase optical elements(PBOEs)have found promising applications in augmented reality and virtual reality because of their slim formfactor,lightweight,and high optical efficiency.However... Liquid crystal Pacharatnam-Berry phase optical elements(PBOEs)have found promising applications in augmented reality and virtual reality because of their slim formfactor,lightweight,and high optical efficiency.However,chromatic aberration remains a serious longstanding problem for diffractive optics,hindering their broader adoption.To overcome the chromatic aberrations for red,green and blue(RGB)light sources,in this paper,we propose a counterintuitive multi-twist structure to achieve narrowband PBOEs without crosstalk,which plays a vital role to eliminate the chromatic aberration.The performance of our designed and fabricated narrowband Pacharatnam-Berry lenses(PBLs)aligns well with our simulation results.Furthermore,in a feasibility demonstration experiment using a laser projector,our proposed PBL system indeed exhibits a diminished chromatic aberration as compared to a broadband PBL.Additionally,polarization raytracing is implemented to demonstrate the versatility of the multi-twist structure for designing any RGB wavelengths with high contrast ratios.This analysis explores the feasibility of using RGB laser lines and quantum dot light-emitting diodes.Overall,our approach enables high optical efficiency,low fabrication complexity,and high degree of design freedom to accommodate any liquid crystal material and RGB light sources,holding immense potential for widespread applications of achromatic PBOEs. 展开更多
关键词 achromatic diffractive optical elements Pacharatnam-Berry phase optical elements liquid crystal planar optics near-eye displays
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A single diffractive optical element implementing spectrum-splitting and beam-concentration functions simultaneously with high diffraction efficiency 被引量:2
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作者 叶佳声 王进泽 +3 位作者 黄庆礼 董碧珍 张岩 杨国桢 《Chinese Physics B》 SCIE EI CAS CSCD 2013年第3期44-49,共6页
In this paper,a novel method is proposed and employed to design a single diffractive optical element(DOE) for implementing spectrum-splitting and beam-concentration(SSBC) functions simultaneously.We develop an opt... In this paper,a novel method is proposed and employed to design a single diffractive optical element(DOE) for implementing spectrum-splitting and beam-concentration(SSBC) functions simultaneously.We develop an optimization algorithm,through which the SSBC DOE can be optimized within an arbitrary thickness range according to the limitations of modern photolithography technology.Theoretical simulation results reveal that the designed SSBC DOE has a high optical focusing efficiency.It is expected that the designed SSBC DOE should have practical applications in high-efficiency solar cell systems. 展开更多
关键词 diffractive optical element spectrum-splitting and beam-concentration functions thickness optimization algorithm solar cell systems
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Simple and universal method in designs of high-efficiency diffractive optical elements for spectrum separation and beam concentration 被引量:2
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作者 徐文琪 林冬风 +8 位作者 许信 叶佳声 王新柯 冯胜飞 孙文峰 韩鹏 张岩 孟庆波 杨国桢 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第7期89-95,共7页
Diffractive optical elements(DOEs) with spectrum separation and beam concentration(SSBC) functions have important applications in solar cell systems. With the SSBC DOEs, the sunlight radiation is divided into seve... Diffractive optical elements(DOEs) with spectrum separation and beam concentration(SSBC) functions have important applications in solar cell systems. With the SSBC DOEs, the sunlight radiation is divided into several wave bands so as to be effectively absorbed by photovoltaic materials with different band gaps. A new method is proposed for designing high-efficiency SSBC DOEs, which is physically simple, numerically fast, and universally applicable. The SSBC DOEs are designed by the new design method, and their performances are analyzed by the Fresnel diffraction integral method.The new design method takes two advantages over the previous design method. Firstly, the optical focusing efficiency is heightened by up to 10%. Secondly, focal positions of all the designed wavelengths can be designated arbitrarily and independently. It is believed that the designed SSBC DOEs should have practical applications to solar cell systems. 展开更多
关键词 diffractive optical element spectrum separation and beam concentration optical focusing efficiency solar cell system
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Realizing high photovoltaic efficiency with parallel multijunction solar cells based on spectrum-splitting and-concentrating diffractive optical element 被引量:1
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作者 王进泽 黄庆礼 +7 位作者 许信 全宝钢 罗建恒 张岩 叶佳声 李冬梅 孟庆波 杨国桢 《Chinese Physics B》 SCIE EI CAS CSCD 2015年第5期329-334,共6页
Based on the facts that multijunction solar cells can increase the efficiency and concentration can reduce the cost dramatically, a special design of parallel multijunction solar cells was presented. The design employ... Based on the facts that multijunction solar cells can increase the efficiency and concentration can reduce the cost dramatically, a special design of parallel multijunction solar cells was presented. The design employed a diffractive optical element (DOE) to split and concentrate the sunlight. A rainbow region and a zero-order diffraction region were generated on the output plane where solar cells with corresponding band gaps were placed. An analytical expression of the light intensity distribution on the output plane of the special DOE was deduced, and the limiting photovoltaic efficiency of such parallel multijunction solar ceils was obtained based on Shockley-Queisser's theory. An efficiency exceeding the Shockley--Queisser limit (33%) can be expected using multijunction solar cells consisting of separately fabricated subcells. The results provide an important alternative approach to realize high photovoltaic efficiency without the need for expensive epitaxial technology widely used in tandem solar cells, thus stimulating the research and application of high efficiency and low cost solar cells. 展开更多
关键词 diffractive optical element SPLIT CONCENTRATION MULTIJUNCTION
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Design optimization of highly efficient spectrum-splitting and beam-concentrating diffractive optical element for lateral multijunction solar cells
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作者 王进泽 叶佳声 +4 位作者 黄庆礼 许信 李冬梅 孟庆波 杨国桢 《Chinese Physics B》 SCIE EI CAS CSCD 2014年第4期319-323,共5页
Two improved algorithms are proposed to extend a diffractive optical element (DOE) to work under the broad spec- trum of sunlight. An optimum design has been found for the DOE, with a weighted average optical effici... Two improved algorithms are proposed to extend a diffractive optical element (DOE) to work under the broad spec- trum of sunlight. An optimum design has been found for the DOE, with a weighted average optical efficiency of about 6.8% better than that of the previous design. The optimization of designing high optical efficiency DOEs will pave the way for future designs of high-efficiency, low-cost lateral multijunction solar cells based on such a DOE. 展开更多
关键词 thickness optimization solar cell SPLIT CONCENTRATION diffractive optical element
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Design of Diffractive Optical Elements Used for Beam Shaping in the Fresnel Domain
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作者 FENG Di, YAN Ying-bai, LU Si, TAN Qiao-feng (State Key Lab.of Precis.Measur.Technol.and Instrum.,Dept.of Precis.Instrum.,Tsinghua University,Beijing 100084,CHN) 《Semiconductor Photonics and Technology》 CAS 2003年第2期107-111,共5页
In the Fresnel transform domain, an effective improvement to the conventional iterative algorithm for designing the diffractive optical elements (DOEs) used for spatial beam shaping has been proposed. The algorithm ca... In the Fresnel transform domain, an effective improvement to the conventional iterative algorithm for designing the diffractive optical elements (DOEs) used for spatial beam shaping has been proposed. The algorithm can successfully achieve to design DOEs for beam shaping. Compared with conventional algorithm, this algorithm can provide faster convergence, more powerful ability to overcome local minimum problem and better shaping quality. By computer simulation, the result has shown that the DOEs designed by this algorithm has snch advantages as high uniformity at the main lobe, low profile error and steep edge. 展开更多
关键词 fresnel domain diffractive optical elements beam shaping
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Subwavelength Diffractive Optical Elements
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作者 金国藩 《光学与光电技术》 2006年第5期21-28,共8页
1 Introduction 1.1 Advantages of DOE 1)High diffraction efficiency; 2)Dispersive; 3)More selectivity of designing parameters; 4)More selectivity of primary materials; 5)Can make components miniature,forming array and ... 1 Introduction 1.1 Advantages of DOE 1)High diffraction efficiency; 2)Dispersive; 3)More selectivity of designing parameters; 4)More selectivity of primary materials; 5)Can make components miniature,forming array and integration. 1.2 1.3 megapixel triplet plastic mobile 展开更多
关键词 Design FDTD Subwavelength diffractive optical elements PBS LENGTH DOE TARGET
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Electric field tunable diffraction optical element based on strontium-barium niobate single crystals
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作者 Vera Shikhova Andrey Akhmatkhanov +4 位作者 Maria Chuvakova Ludmila Ivleva Vladimir Pavelyev Maxim Nebogatikov Vladimir Shur 《Journal of Advanced Dielectrics》 2025年第3期139-147,共9页
In this paper,we present the electric field controllable diffractive optical elements in strontium-barium niobate single crystals with stable tailored spiral-shaped domain structure and demonstrate the generation of o... In this paper,we present the electric field controllable diffractive optical elements in strontium-barium niobate single crystals with stable tailored spiral-shaped domain structure and demonstrate the generation of optical beam with orbital angular momentum.The required domain pattern was created in the sample with initial domain structure by electric field application using the photolithographically defined liquid electrode.A series of bipolar triangular electric field pulses were applied to the sample for determination of the optimal parameters for complete polarization switching under the electrode.The stable tailored domain pattern of the spiral shape was created by the application of the unipolar pulse of a special shape.The complete switching under the electrode and partial switching under the photoresist layer have been revealed.The imaging by Cherenkov-type second harmonic generation microscopy confirmed that the created domain structure reaches the opposite polar surface.The imaging of the diffraction pattern of the laser beam passing through a voltage-biased DOE confirmed the formation of the beam with orbital angular momentum.The half-wave voltages of 237V and 302 V for wavelength 632.8 nm and 532 nm,respectively,for 2-mmthick sample were measured.The obtained knowledge can be used for the development of domain engineering methods in strontium-barium niobate single crystals for the creation of tailored domain structures for manufacturing of electric field controllablediffractiveoptical elements. 展开更多
关键词 Domain structure strontium-barium niobate diffraction optical element switching current Cherenkov-type second harmonic generation microscopy
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Light-activated film diffractive optical elements enable diversified optical field modulation
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作者 Ning Shen Honglong Hu +3 位作者 Zhaoyi Wang Yuxing Zhan Conglong Yuan Zhigang Zheng 《Chinese Optics Letters》 2025年第1期86-92,共7页
We propose a promising method to develop flexible,compact,and tunable light-activated film diffractive optical elements(FDOEs)with exceptional diffraction efficiency,by integrating liquid crystal(LC)geometric phase-ba... We propose a promising method to develop flexible,compact,and tunable light-activated film diffractive optical elements(FDOEs)with exceptional diffraction efficiency,by integrating liquid crystal(LC)geometric phase-based diffractive optical elements(DOEs)with a specifically designed light-activated LC polymer(LCP)film.Arbitrary film bending induced by UV/Vis irradiation is realized through precise mesogens arrangement within the LCP film,enabling 1D and 2D beam steering,as well as dynamic and reversible switching between structured and Gaussian lights after cooperating with the DOE design.Furthermore,remarkable fatigue resistance,solvent resistance,and thermal stability are demonstrated,providing a solid material platform for advanced optical applications. 展开更多
关键词 diffractive optical elements liquid crystal polymer light-activated film optical field modulation
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A multi-photon(7×7)-focus 3D laser printer based on a 3D-printed diffractive optical element and a 3D-printed multi-lens array 被引量:2
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作者 Pascal Kiefer Vincent Hahn +3 位作者 Sebastian Kalt Qing Sun Yolita M.Eggeler Martin Wegener 《Light(Advanced Manufacturing)》 2024年第1期26-39,共14页
One of the challenges in the field of multi-photon 3D laser printing lies in further increasing the print speed in terms of voxels/s.Here,we present a setup based on a 7×7 focus array(rather than 3×3 in our ... One of the challenges in the field of multi-photon 3D laser printing lies in further increasing the print speed in terms of voxels/s.Here,we present a setup based on a 7×7 focus array(rather than 3×3 in our previous work)and using a focus velocity of about 1 m/s(rather than 0.5 m/s in our previous work)at the diffraction limit(40×/NA1.4 microscope objective lens).Combined,this advance leads to a ten times increased print speed of about 108 voxels/s.We demonstrate polymer printing of a chiral metamaterial containing more than 1.7×10^(12) voxels as well as millions of printed microparticles for potential pharmaceutical applications.The critical high-quality micro-optical components of the setup,namely a diffractive optical element generating the 7×7 beamlets and a 7×7 lens array,are manufactured by using a commercial two-photon grayscale 3D laser printer. 展开更多
关键词 3D laser printing Direct laser writing Multi-photon absorption Multi-focus optics diffractive optical element Lens array
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Full Complex Amplitude Digital Holograms: Design, Fabrication and Optical Characterization
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作者 NetoLG CardonaPSP +1 位作者 CirinoGA MansanocRD 《光机电信息》 2004年第7期15-25,共11页
Diffractive optical elements have a large number of industrial applications, such as beam shaping and optical filtering. Traditionally, these elements modulate the phase of the incoming light or its amplitude, but not... Diffractive optical elements have a large number of industrial applications, such as beam shaping and optical filtering. Traditionally, these elements modulate the phase of the incoming light or its amplitude, but not both. To overcome this limitation, full complex-amplitude modulation diffractive optical elements were developed. Well-established integrated circuit fabrication steps were employed to fabricate the devices with high precision. Using this approach, the new element's optical performances are improved also for near field operations. With this device it is possible to obtain 100% efficient spatial filtering and low noise reconstructed images. 展开更多
关键词 全息图 激光技术 应用光学 调幅
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Design of refractive/diffractive hybrid optical elements for beam shaping with large diffraction pattern 被引量:4
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作者 曲卫东 顾华荣 谭峭峰 《Chinese Optics Letters》 SCIE EI CAS CSCD 2016年第3期64-67,共4页
Diffractive optics is an important technique for beam shaping with high light efficiency and strong diffraction pattern flexibility. Since the diffraction angle is limited by the unit size of the diffractive optical e... Diffractive optics is an important technique for beam shaping with high light efficiency and strong diffraction pattern flexibility. Since the diffraction angle is limited by the unit size of the diffractive optical element (DOE), the size of the required diffraction pattern is always rather small. In this Letter, refractive/diffractive hybrid optical elements (RDHOEs) consisting of a DOE and a lens are used to realize beam shaping for a large diffraction pattern. The lens, as the component of the RDHOEs, can not only be concave but also convex, and the double sampling Fresnel diffraction algorithm is developed for the design of these two types of RDHOEs. The simulation and experimental results provide solid evidence to demonstrate the proposed method with the pure phase spatial light modulator. 展开更多
关键词 diffraction patterns diffractive optical elements INTERFEROMETRY Lenses LIGHT Light modulators
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Laser beam characteristic for laser resonators with diffraction optical elements 被引量:1
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作者 陆璇辉 黄凯凯 +2 位作者 薛大建 张蕾 何赛灵 《Chinese Optics Letters》 SCIE EI CAS CSCD 2003年第3期153-156,共4页
The matrix eigenvalue method is used to analyze a laser resonator composed of diffraction optical elements. The results show that this type of resonator can separate fundamental mode and high order modes effectively. ... The matrix eigenvalue method is used to analyze a laser resonator composed of diffraction optical elements. The results show that this type of resonator can separate fundamental mode and high order modes effectively. The output beams can be designed for different requests. 展开更多
关键词 MODE on BE of AS for Laser beam characteristic for laser resonators with diffraction optical elements with
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斜入射高衍射效率双层衍射光学元件优化方法
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作者 刘子龙 付跃刚 +2 位作者 胡源 周新雨 关禹聪 《电光与控制》 北大核心 2025年第1期80-85,共6页
针对双层衍射光学元件传统优化方法斜入射时衍射效率偏低的问题,基于双层衍射光学元件衍射效率与入射角度及波长的理论关系模型,提出了角度优化设计方法。通过分析设计过程中不同入射角和微结构高度对衍射效率的影响,优化选取微结构高度... 针对双层衍射光学元件传统优化方法斜入射时衍射效率偏低的问题,基于双层衍射光学元件衍射效率与入射角度及波长的理论关系模型,提出了角度优化设计方法。通过分析设计过程中不同入射角和微结构高度对衍射效率的影响,优化选取微结构高度,显著提高了大视场下的衍射效率。为了验证上述理论,采用长短波衍射效率相等法、带宽积分平均衍射效率最大法以及提出的角度优化设计方法,分别对可见光波段和红外波段的双层衍射光学元件进行设计。结果表明,角度优化设计方法能够有效提高双层衍射光学元件的角度带宽积分平均衍射效率,进而提高光学系统的成像质量。最后,基于角度优化设计方法设计了长焦折衍混合系统,实现了高衍射效率下的高像质折衍混合系统。 展开更多
关键词 双层衍射光学元件 衍射效率 入射角度 折衍混合光学系统
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可见光波段计算单层衍射光学元件设计
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作者 邹慧田 朴明旭 +4 位作者 张贤 童英然 王浩然 娄一辰 蒋红梅 《红外与激光工程》 北大核心 2025年第8期320-331,共12页
在光学成像领域,为了优化系统结构并提升成像质量,单元件成像系统与计算成像技术的结合已成为一种关键的技术趋势。提出了一种计算单层衍射光学元件(Computational Single-layer Diffractive Optical Element,CSDOE)的设计方法,基于赛... 在光学成像领域,为了优化系统结构并提升成像质量,单元件成像系统与计算成像技术的结合已成为一种关键的技术趋势。提出了一种计算单层衍射光学元件(Computational Single-layer Diffractive Optical Element,CSDOE)的设计方法,基于赛德尔像差理论,推导了CSDOE的色差表达式,并通过分析不同颜色通道之间的关系,建立了考虑衍射效率的色差校正模型。设计并加工了焦距为50 mm、全视场为3°、波段范围为405~690 nm的CSDOE,利用考虑衍射效率的色差校正模型结合优化迭代算法处理图像,消除了色差与衍射效率对成像的影响。理论模拟和实际测试结果表明,对比度、灰度值梯度和标准差分别提高了17%、22.2%、21.7%和17.6%、41.1%、10.3%。该方法不仅实现了光学系统的小型化和轻量化,还为光学系统的设计与发展提供了新的思路。 展开更多
关键词 光学设计 计算成像 衍射元件 点扩散函数 消色差 衍射效率
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基于非信号区域散斑反馈的GS改进算法
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作者 项涛 王博伟 +2 位作者 殷睿涛 向奇 张航 《光子学报》 北大核心 2025年第5期188-198,共11页
针对Gerchberg-Saxton(GS)算法对初始相位敏感、光斑内部均匀性差,以及混合区域振幅自由度(MRAF)算法的低衍射效率和非信号区域散斑严重等问题,提出了一种改进的GS算法。首先,采用泽尼克多项式作为初始相位的基础形态,引入权重系数Z值,... 针对Gerchberg-Saxton(GS)算法对初始相位敏感、光斑内部均匀性差,以及混合区域振幅自由度(MRAF)算法的低衍射效率和非信号区域散斑严重等问题,提出了一种改进的GS算法。首先,采用泽尼克多项式作为初始相位的基础形态,引入权重系数Z值,并通过迭代寻优算法获取最佳Z值,以生成初始相位。其次,在改进算法的前半部分使用GS算法优化初始相位,以确保其与目标光斑的适配性并维持高衍射效率,随后使用MRAF算法提升光斑内部的均匀性并降低误差。最后,基于输出面实际光强分布的反馈构建了一种优化机制,以获得最佳的DOE相位分布。针对三角形、方形和圆形光斑进行了优化设计,并开展了模拟仿真和光路实验,结果表明改进算法实现了超过98.30%的衍射效率和低于1.10%的均方根误差,并有效抑制了非信号区域的散斑,展现出强大的图形泛化能力。 展开更多
关键词 衍射光学元件 光束整形 GS算法 泽尼克多项式 散斑抑制
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Diffractive optical elements 75 years on:from micro-optics to metasurfaces 被引量:18
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作者 Qiang Zhang Zehao He +5 位作者 Zhenwei Xie Qiaofeng Tan Yunlong Sheng Guofan Jin Liangcai Cao Xiaocong Yuan 《Photonics Insights》 2023年第4期43-101,共59页
Diffractive optical elements(DOEs)are intricately designed devices with the purpose of manipulating light fields by precisely modifying their wavefronts.The concept of DOEs has its origins dating back to 1948 when D.G... Diffractive optical elements(DOEs)are intricately designed devices with the purpose of manipulating light fields by precisely modifying their wavefronts.The concept of DOEs has its origins dating back to 1948 when D.Gabor first introduced holography.Subsequently,researchers introduced binary optical elements(BOEs),including computer-generated holograms(CGHs),as a distinct category within the realm of DOEs.This was the first revolution in optical devices.The next major breakthrough in light field manipulation occurred during the early 21st century,marked by the advent of metamaterials and metasurfaces.Metasurfaces are particularly appealing due to their ultra-thin,ultra-compact properties and their capacity to exert precise control over virtually every aspect of light fields,including amplitude,phase,polarization,wavelength/frequency,angular momentum,etc.The advancement of light field manipulation with micro/nano-structures has also enabled various applications in fields such as information acquisition,transmission,storage,processing,and display.In this review,we cover the fundamental science,cutting-edge technologies,and wide-ranging applications associated with micro/nano-scale optical devices for regulating light fields.We also delve into the prevailing challenges in the pursuit of developing viable technology for real-world applications.Furthermore,we offer insights into potential future research trends and directions within the realm of light field manipulation. 展开更多
关键词 diffractive optical elements metasurfaces METAMATERIALS
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End-to-end optimization of a diffractive optical element and aberration correction for integral imaging 被引量:1
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作者 Xiangyu Pei Xunbo Yu +4 位作者 Xin Gao Xinhui Xie Yuedi Wang Xinzhu Sang Binbin Yan 《Chinese Optics Letters》 SCIE EI CAS CSCD 2022年第12期12-18,共7页
In the integral imaging light field display, the introduction of a diffractive optical element (DOE) can solve the problem of limited depth of field of the traditional lens. However, the strong aberration of the DOE s... In the integral imaging light field display, the introduction of a diffractive optical element (DOE) can solve the problem of limited depth of field of the traditional lens. However, the strong aberration of the DOE significantly reduces the final display quality. Thus, herein, an end-to-end joint optimization method for optimizing DOE and aberration correction is proposed. The DOE model is established using thickness as the variable, and a deep learning network is built to preprocess the composite image loaded on the display panel. The simulation results show that the peak signal to noise ratio value of the optimized image increases by 8 dB, which confirms that the end-to-end joint optimization method can effectively reduce the aberration problem. 展开更多
关键词 integral imaging diffractive optical element end-to-end optimization deep learning network aberration correction
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基于衍射透镜接收的激光雷达特性分析及测试 被引量:4
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作者 王玲 刘博 +2 位作者 吴城 罗兰 杨玉强 《光电工程》 CAS CSCD 北大核心 2024年第3期143-151,共9页
在激光雷达系统设计中,光学系统的优化与设计是一个重要的研究方向,本文利用衍射光学元件(DOE)的设计自由度高和色散大等优势,将DOE用于激光雷达接收端,同时实现聚焦和滤光作用,降低了光学系统复杂度。本文基于DOE的原理,仿真分析了DOE... 在激光雷达系统设计中,光学系统的优化与设计是一个重要的研究方向,本文利用衍射光学元件(DOE)的设计自由度高和色散大等优势,将DOE用于激光雷达接收端,同时实现聚焦和滤光作用,降低了光学系统复杂度。本文基于DOE的原理,仿真分析了DOE的光学特性,并且以DOE作为激光雷达的光学接收端,完成了激光雷达测距实验,证明了DOE同时具有聚焦作用和窄带滤光作用,实验结果与仿真基本一致。本文利用DOE在激光雷达中的优势,实现激光雷达的轻量化、集成化和高效化。 展开更多
关键词 激光雷达 衍射光学元件 轻量化 滤光
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Diffractive Optical Elements for Dynamic Optical Coupling
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作者 Changhe Zhou Xin Zhao Liren Liu(Shanghai Institute of Optics and Fine Mechanics, Academia Sinica, P. R. China, Tel: 86-21-59911864,Fax:86-21-59536156, E-mail: chazhou@mail.shcnc.ac.cn) 《光学学报》 EI CAS CSCD 北大核心 2003年第S1期261-262,共2页
Diffractive optical elements such as the complementary Dammann gratings are incorporated for dynamic optical fiber splitting and combining. Experimental results of 1×8 dynamic optical couplings are presented.
关键词 for HAVE of into diffractive optical elements for Dynamic optical Coupling
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