搜索到12177篇“ HOLOGRAPHY“的相关文章
Bessel–Gaussian beam-based orbital angular momentum holography
2024年
Orbital angular momentum(OAM), as a new degree of freedom, has recently been applied in holography technology.Due to the infinite helical mode index of OAM mode, a large number of holographic images can be reconstructed from an OAM-multiplexing hologram. However, the traditional design of an OAM hologram is constrained by the helical mode index of the selected OAM mode, for a larger helical mode index OAM mode has a bigger sampling distance, and the crosstalk is produced for different sampling distances for different OAM modes. In this paper, we present the design of the OAM hologram based on a Bessel–Gaussian beam, which is non-diffractive and has a self-healing property during its propagation. The Fourier transform of the Bessel–Gaussian beam is the perfect vortex mode that has the fixed ring radius for different OAM modes. The results of simulation and experiment have demonstrated the feasibility of the generation of the OAM hologram with the Bessel–Gaussian beam. The quality of the reconstructed holographic image is increased, and the security is enhanced. Additionally, the anti-interference property is improved owing to its self-healing property of the Bessel-OAM holography.
季佳滢郑志刚朱家龙王乐王新光赵生妹
关键词:HOLOGRAPHY
Active metasurface via magnetic control for tri-channel polarization multiplexing holography
2024年
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.
毕钰黄玲玲李拓王长红邹晓峰周朗康果果
二值编码相位掩模交替迭代优化的无干涉非相干全息术
2024年
提出基于交替策略的随机轨迹直接二进制搜索法。数值仿真结果表明,该方法有效抑制了迭代过程中直流偏置的增加并提高迭代速度。实验结果证明,在同样的迭代次数下,该方法显著降低了重建图像的相关重建噪声。该方法推动了无干涉编码孔径相关全息术(I-COACH)系统在可见光范围外成像的应用。
潘立辉于雪莲程绪坤孙彦乾李秀芳
关键词:图像处理
Tailoring electron vortex beams with customizable intensity patterns by electron diffraction holography
2024年
An electron vortex beam(EVB) carrying orbital angular momentum(OAM) plays a key role in a series of fundamental scientific researches, such as chiral energy-loss spectroscopy and magnetic dichroism spectroscopy. So far, almost all the experimentally created EVBs manifest isotropic doughnut intensity patterns. Here, based on the correlation between local divergence angle of electron beam and phase gradient along azimuthal direction, we show that free electrons can be tailored to EVBs with customizable intensity patterns independent of the carried OAM. As proof-of-concept, by using computer generated hologram and designing phase masks to shape the incident free electrons in the transmission electron microscope, three structured EVBs carrying identical OAM are tailored to exhibit completely different intensity patterns. Furthermore, through the modal decomposition, we quantitatively investigate their OAM spectral distributions and reveal that structured EVBs present a superposition of a series of different eigenstates induced by the locally varied geometries. These results not only generalize the concept of EVB, but also demonstrate an extra highly controllable degree of freedom for electron beam manipulation in addition to OAM.
Pengcheng HuoRuixuan YuMingze LiuHui ZhangYan-qing LuTing Xu
Dynamic interactive bitwise meta-holography with ultra-high computational and display frame rates
2024年
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 spa-tially 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 holo-gram 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.
Yuncheng LiuKe XuXuhao FanXinger WangXuan YuWei XiongHui Gao
Advances in large viewing angle and achromatic 3D holography
2024年
Optical holography is a promising technique to achieve a naked-eye 3D display.However,the narrow viewing angle and chromatic aberration are the two key issues that usually limit the holographic display performance.A recent work proposes a novel way to circumvent these constraints by introducing a color liquid crystal grating into a timesequenced holography system.
Jiaming HuangYu ChenGuixin Li
关键词:ANGLECHROMATICHOLOGRAPHIC
三维空间轨道角动量全息
2024年
光的轨道角动量自由度已被作为一种新的信息载体用于光全息信息处理技术之中.然而,目前关于轨道角动量全息技术的研究主要集中在二维轨道角动量全息,即重构的二维全息图像位于三维空间中的某一个平面内.如何进一步实现三维空间轨道角动量全息技术并将其用于增加全息通信的信息容量仍然是一个空白.本文基于轨道角动量自由度和重构的二维图像在三维空间中的位置自由度,实现了三维空间轨道角动量全息技术.换言之,在我们实现的三维空间轨道角动量全息中,目标物体图像的获得不仅要求使用正确的解码轨道角动量态,还要求在正确的空间位置来探测物体的图像.此外,还进一步研究了三维空间轨道角动量全息复用技术,并指出该复用技术可用于信息加密.与传统的二维轨道角动量全息技术相比,三维空间轨道角动量全息技术使用了额外的自由度,即成像的空间位置.因此,基于三维空间轨道角动量全息技术的加密方案可以进一步提高信息的安全等级.我们的理论模拟结果和实验结果验证了三维空间轨道角动量全息技术以及三维空间轨道角动量全息加密技术的可行性.
贾谊成张福荣张景风孔令军张向东
关键词:轨道角动量
计算全息综合性光电教学实验设计
2024年
基于傅里叶光学原理实现对目标光场进行精确重建,设计了从显示目标绘制,相应计算全息图生成到光学重建的综合性教学实验。具体的实验流程包含基于Visio的显示目标设计,基于MATLAB的相位型计算全息图生成算法编写和基于相位型液晶空间光调制器的目标重建光路搭建。实验设计结合了光学、数字电路和计算机软件技术,具有流程清晰、易于教学、学生参与度高和获得感强的优势,可有效增强学生对计算全息技术与光电信息技术的理论理解与实操能力。
刘珂瑄朱昊何泽浩李玉和曹良才
关键词:实验教学计算全息液晶空间光调制器
基于偏振全息术制备Pancharatnam-Berry相位光栅
2024年
PB相位光栅既具有对入射光偏振方向敏感的独特性质,同时又具有较宽的响应带宽和较高的单级衍射效率.采用基于偏振全息记录的液晶技术,将光敏偶氮染料SD-1旋涂在单面导电的ITO玻璃基板上,曝光后可得到具有偏振周期性旋转图案的取向层.结合FDTD模拟仿真,设计了PB相位光栅制备方案并搭建了实验装置.设计PB相位光栅衍射效率的检测光路,验证其高效的单级衍射.搭建圆偏振光旋向检测光路,验证了PB相位光栅改变入射圆偏振光旋向的特性.
郭叁育任雪畅炉庆洪
关键词:液晶
基于数字全息的模糊图像复原技术研究
2024年
采用数字全息方法研究物体经散射介质(毛玻璃)成像复原机理。首先,在菲涅尔离轴数字全息原理的基础上,建立了数字全息记录与再现的数学模型。然后,设计和搭建了全息散射成像系统,建立了毛玻璃的数学模型,并提出一种消除毛玻璃散斑噪声的算法,利用菲涅耳再现算法对实验得到的数字全息图进行再现。最后,用频谱滤波法对全息图再处理后进行再现。实验结果验证了理论算法和实验方法的正确性,为今后物体经过复杂介质的图像复原的深入研究提供了帮助。
李郁峰田二明李琴李晓
关键词:数字全息

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王华英
作品数:143被引量:244H指数:11
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李超
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方广有
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施英
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供职机构:昆明理工大学
研究主题:SHEARING 物理光学 最小二乘 药物分析 拉曼散射