Author Affiliations
Abstract
1 Tianjin University, Center for Terahertz Waves and College of Precision Instrument and Optoelectronics Engineering, Ministry of Education, Key Laboratory of Optoelectronic Information Technology, Tianjin, China
2 Tianjin University, College of Intelligence and Computing, Tianjin, China
3 Central South University, School of Physics and Electronics, Hunan Key Laboratory of Nanophotonics and Devices, Changsha, China
4 Guilin University of Electronic Technology, School of Optoelectronic Engineering, Guangxi Key Laboratory of Optoelectronic Information Processing, Guilin, China
5 Oklahoma State University, School of Electrical and Computer Engineering, Stillwater, Oklahoma, United States
Recently, deep learning has been used to establish the nonlinear and nonintuitive mapping between physical structures and electromagnetic responses of meta-atoms for higher computational efficiency. However, to obtain sufficiently accurate predictions, the conventional deep-learning-based method consumes excessive time to collect the data set, thus hindering its wide application in this interdisciplinary field. We introduce a spectral transfer-learning-based metasurface design method to achieve excellent performance on a small data set with only 1000 samples in the target waveband by utilizing open-source data from another spectral range. We demonstrate three transfer strategies and experimentally quantify their performance, among which the “frozen-none” robustly improves the prediction accuracy by ∼26 % compared to direct learning. We propose to use a complex-valued deep neural network during the training process to further improve the spectral predicting precision by ∼30 % compared to its real-valued counterparts. We design several typical teraherz metadevices by employing a hybrid inverse model consolidating this trained target network and a global optimization algorithm. The simulated results successfully validate the capability of our approach. Our work provides a universal methodology for efficient and accurate metasurface design in arbitrary wavebands, which will pave the way toward the automated and mass production of metasurfaces.
transfer learning complex-valued deep neural network metasurface inverse design conditioned adaptive particle swarm optimization terahertz 
Advanced Photonics Nexus
2024, 3(2): 026002
高记星 1,2娄智远 1,2杨帆 1,2杨晓骏 1[ ... ]李儒新 1,2,3
作者单位
摘要
1 中国科学院上海光学精密机械研究所强场激光物理国家重点实验室,上海 201800
2 中国科学院大学材料科学与光电工程中心,北京 100049
3 张江实验室,上海 201210
利用百太瓦级激光系统在氖气(Ne)中得到基于高次谐波产生的极紫外脉冲。通过松聚焦结构在13 nm波段产生单级次单脉冲能量为13.5 nJ(13.1 nm波长)和11.1 nJ(13.5 nm波长)的高次谐波辐射,转换效率为3.6×10-73.0×10-7,谐波发散角的半高全宽为0.32 mrad和0.33 mrad。对含时薛定谔方程进行数值求解,得到单原子偶极发射谱,结合麦克斯韦方程组模拟传播效应,同时考虑气体对谐波的吸收效应,理论模拟得到的信号强度随气压和光强的变化趋势与实验结果基本符合。实现相位匹配的谐波光束质量很好,纵向空间分布为高斯型。结合相位匹配条件和空间分布的分析得到了目前激光参数下的最优相位匹配条件。这种基于高次谐波机制的高能量相干极紫外光源在作为自由电子激光的种子光源以及超快非线性实验和半导体工业检测等方面具有广阔的应用前景。
极紫外 高次谐波 相位匹配 空间分布 
光学学报
2024, 44(2): 0214001
作者单位
摘要
1 天津大学 精密仪器与光电子工程学院,天津 300072
2 珠海光库科技股份有限公司,珠海 519080
针对光纤激光中的高阶色散失配问题,基于传统光脉冲群延迟原理,提出了一种非线性啁啾光纤光栅的色散分析数学模型,推导了布拉格反射波长与色散参量及色散斜率的数值关系。同时,利用该模型研制了两款用于1 μm波段超快光纤激光的非线性啁啾光纤光栅,可将入射脉冲宽度分别展宽至150 ps或1 ns以上,并通过光谱干涉法获得了两款光纤光栅的色散曲线。研究结果表明,两款光纤光栅的色散参量实测值分别为-10.3 ps/nm和-107 ps/nm,色散斜率实测值分别为-0.013 ps/nm2和-0.087 ps/nm2,与设计参数具有良好的一致性。这可为啁啾光纤光栅的设计分析和生产测试提供新的解决思路和参考依据。
光纤光栅 色散 色散测量 超快光学 非线性 Fiber Bragg grating Dispersion Dispersion measurement Ultrafast optics Nonlinear 
光子学报
2023, 52(12): 1205001
Author Affiliations
Abstract
1 Guangdong Provincial Key Laboratory of Information Photonics Technology, Institute of Advanced Photonics Technology, School of Information Engineering, Guangdong University of Technology, Guangzhou 510006, China
2 Department of Electronic Engineering, College of Information Science and Technology, Jinan University, Guangzhou 510632, China
3 Guangdong Provincial Key Laboratory of Nanophotonic Functional Materials and Devices and Guangzhou Key Laboratory for Special Fiber Photonic Devices and Applications, South China Normal University, Guangzhou 510006, China
4 Synergy Innovation Institute of GDUT, Heyuan 517000, China
Realizing high-fidelity optical information transmission through a scattering medium is of vital importance in both science and applications, such as short-range fiber communication and optical encryption. Theoretically, an input wavefront can be reconstructed by inverting the transmission matrix of the scattering medium. However, this deterministic method for retrieving light field information encoded in the wavefront has not yet been experimentally demonstrated. Herein, we demonstrate light field information transmission through different scattering media with near-unity fidelity. Multi-dimensional optical information can be delivered through either a multimode fiber or a ground glass without relying on any averaging or approximation, where their Pearson correlation coefficients can be up to 99%.
light field information transmission transmission matrix 
Chinese Optics Letters
2023, 21(12): 121101
作者单位
摘要
1 中国民用航空飞行学院民机复合材料维修研究中心,四川 广汉618307
2 温州大学激光与光电智能制造研究院,浙江 温州 325035
随着飞机蒙皮“部分褪漆”维修理念的提出,多漆层结构激光除漆的可控性值得关注。基于响应面分析方法,建立了激光参数(光斑搭接率、激光功率及扫描次数)与可控性指标(漆层去除厚度、表面粗糙度)间的数学模型,分析了激光多参数耦合作用对可控性指标的影响规律。结果表明:激光参数对漆层去除厚度的影响顺序依次为扫描次数、激光功率、光斑搭接率,且均为正相关;表面粗糙度随光斑搭接率的增大而减小,随激光功率的增大而增大,扫描次数对表面粗糙度的影响具有峰值效应。验证试验结果表明:响应面模型可为厚度精度为±5 μm的激光可控除漆提供参考。基于响应面分析方法建立的多漆层结构激光可控清除数学模型,可为飞机蒙皮漆层的激光可控清除提供方法指导与理论支撑。
激光技术 激光除漆 多漆层结构 耦合作用 可控性 响应面分析 
激光与光电子学进展
2023, 60(15): 1514004
Author Affiliations
Abstract
1 State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-intense Laser Science, Shanghai Institute of Optics and Fine Mechanics (SIOM), Chinese Academy of Sciences (CAS), Shanghai, China
2 School of Physical Science and Technology, ShanghaiTech University, Shanghai, China
A single-shot measurement of electron emittance was experimentally accomplished using a focused transfer line with a dipole. The betatron phase of electrons based on laser wakefield acceleration (LWFA) is energy dependent owing to the coupling of the longitudinal acceleration field and the transverse focusing (defocusing) field in the bubble. The phase space presents slice information after phase compensation relative to the center energy. Fitting the transverse size of the electron beam at different energy slices in the energy spectrum measured 0.27 mm mrad in the experiment. The diagnosis of slice emittance facilitates local electron quality manipulation, which is important for the development of LWFA-based free electron lasers. The quasi-3D particle-in-cell simulations matched the experimental results and analysis well.
beam diagnostic emittance laser wakefield acceleration 
High Power Laser Science and Engineering
2023, 11(3): 03000e36
Author Affiliations
Abstract
1 State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-intense Laser Science, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
2 University of Chinese Academy of Sciences, Beijing 100049, China
3 School of Physical Science and Technology, ShanghaiTech University, Shanghai 201210, China
The plasma mirror system was installed on the 1 PW laser beamline of Shanghai Superintense Ultrafast Laser Facility (SULF) for enhancing the temporal contrast of the laser pulse. About 2 orders of magnitude improvement on pulse contrast was measured on picosecond and nanosecond time scales. The experiments show that high-contrast laser pulses can significantly improve the cutoff energy and quantity of proton beams. Then different target distributions are assumed in particles in cell simulations, which can qualitatively assume the expansion of nanometer-scale foil. The high-contrast laser enables the SULF-1PW beamline to generally be of benefit for many potential applications.
ultraintense laser plasma mirror high-contrast laser proton acceleration 
Chinese Optics Letters
2023, 21(4): 043802
Author Affiliations
Abstract
1 State Key Laboratory of High Field Laser Physics and CAS Center for Excellence in Ultra-intense Laser Science, Shanghai Institute of Optics and Fine Mechanics (SIOM), Chinese Academy of Sciences (CAS), Shanghai, China
2 Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, China
We demonstrate an ultra-broadband high temporal contrast infrared laser source based on cascaded optical parametric amplification, hollow-core fiber (HCF) and second harmonic generation processes. In this setup, the spectrum of an approximately 1.8 μm laser pulse has near 1 μm full bandwidth by employing an argon gas-filled HCF. Subsequently, after frequency doubling with cascaded crystals and dispersion compensation by a fused silica wedge pair, 9.6 fs (~3 cycles) and 150 μJ pulses centered at 910 nm with full bandwidth of over 300 nm can be generated. The energy stability of the output laser pulse is excellent with 0.8% (root mean square) over 20 min, and the temporal contrast is >1012 at –10 ps before the main pulse. The excellent temporal and spatial characteristics and stability make this laser able to be used as a good seed source for ultra-intense and ultrafast laser systems.
few-cycle laser high temporal contrast ultra-broadband ultrafast laser 
High Power Laser Science and Engineering
2023, 11(1): 010000e5
作者单位
摘要
1 天津大学精密测试技术及仪器国家重点实验室,天津 300072
2 中国航发四川燃气涡轮研究院,四川 成都 611730
线结构光三维传感器需要结合扫描机构才能对物体进行三维重构,在使用前需要对扫描方向进行标定。由于各个标定图像的清晰度不同,传统标定方法会多次引入噪声,降低了标定精度。为了减小由图像清晰度不同多次引入的噪声,本文提出了基于联合估计的扫描方向标定方法。在标定过程中,需要使用位移台将平面靶标移动一个固定的距离,使每个拍摄位置处的靶标相对相机坐标系的旋转矩阵相同,同时平移向量的变化由位移台的运动步长约束。通过对旋转矩阵和平移向量增加约束,将平面靶标上的二维特征点拓展为三维特征点;联合所有标定图像进行统一的单应性估计,减小了由图像清晰度不同多次引入的噪声。通过测量量块尺寸进行了验证实验,实验结果表明:所提方法的测量误差相比传统方法减小了约30%,而且所提方法具有更好的重复性。所提方法实现了线结构光三维传感器扫描方向的高精度标定,减小了传感器三维重构的误差。
机器视觉 扫描方向标定 联合单应性估计 噪声分析 线结构光传感器 
中国激光
2023, 50(5): 0504001
作者单位
摘要
1 中国民用航空飞行学院民机复合材料维修研究中心,四川 广汉 618307
2 温州大学激光与光电智能制造研究院,浙江 温州 325035
研究激光单脉冲作用后漆层表面的凹坑形貌可以有效抑制激光多参数叠加效应及脉冲重叠的光热与光力效应,有助于揭示激光与材料的作用机制,同时可为激光参数优化提供依据。本团队利用实验凹坑形貌数据获得漆层去除深度d及能量密度F的关系式,并基于烧蚀机制建立了高斯激光单脉冲作用后模拟漆层凹坑形貌的数学模型,采用MATLAB对13.58~27.16 J/cm2能量密度下的凹坑形貌进行了模拟与验证。结果表明:低能量密度(13.58~16.98 J/cm2)下,凹坑深度和直径误差均小于5%,凹坑表面近似为旋转抛物面,凹坑剖面轮廓近似为抛物线;高能量密度(20.37~27.16 J/cm2)下,凹坑深度误差小于5%,但凹坑直径误差高达40%,模拟结果与实验结果存在显著差异。误差分析表明,在高能量密度下,等离子冲击与热辐射机制对凹坑形貌具有显著影响。基于上述分析对模型进行修正,修正模型对凹坑深度和直径的模拟误差均控制在5%以内,显著提高了模型模拟的准确性。基于凹坑形貌实验数据建立的形貌模型以及该模型的验证,不仅揭示了不同能量密度下激光与材料主要作用机制的差异,还为高、低能量密度下除漆效果的精确控制及激光参数优化提供了参考。
激光技术 激光除漆 单脉冲 凹坑形貌 模拟与验证 
中国激光
2023, 50(4): 0402016

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