精品无码日韩国产不卡av,国产午夜人做人免费视频中文,亚洲阿v天堂在线观看2024,免费人成视网站在线不卡,免费av资源网站,免费精品国产自在在线?pp,国产国语一级A毛片高清视频,久久最新免费网址

2024

2024

  • Record 25 of

    Title:Duplex-Hierarchy Representation Learning for Remote Sensing Image Classification
    Author Full Names:Yuan, Xiaobin(1,2); Zhu, Jingping(1); Lei, Hao(3,4); Peng, Shengjun(5); Wang, Weidong(6); Li, Xiaobin(7)
    Source Title:Sensors
    Language:English
    Document Type:Journal article (JA)
    Abstract:Remote sensing image classification (RSIC) is designed to assign specific semantic labels to aerial images, which is significant and fundamental in many applications. In recent years, substantial work has been conducted on RSIC with the help of deep learning models. Even though these models have greatly enhanced the performance of RSIC, the issues of diversity in the same class and similarity between different classes in remote sensing images remain huge challenges for RSIC. To solve these problems, a duplex-hierarchy representation learning (DHRL) method is proposed. The proposed DHRL method aims to explore duplex-hierarchy spaces, including a common space and a label space, to learn discriminative representations for RSIC. The proposed DHRL method consists of three main steps: First, paired images are fed to a pretrained ResNet network for extracting the corresponding features. Second, the extracted features are further explored and mapped into a common space for reducing the intra-class scatter and enlarging the inter-class separation. Third, the obtained representations are used to predict the categories of the input images, and the discrimination loss in the label space is minimized to further promote the learning of discriminative representations. Meanwhile, a confusion score is computed and added to the classification loss for guiding the discriminative representation learning via backpropagation. The comprehensive experimental results show that the proposed method is superior to the existing state-of-the-art methods on two challenging remote sensing image scene datasets, demonstrating that the proposed method is significantly effective. ? 2024 by the authors.
    Affiliations:(1) The School of Electronic and Information Engineering, Xi’an Jiaotong University, Xi’an; 710049, China; (2) The Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (3) National Key Laboratory of Human-Machine Hybrid Augmented Intelligence, Xi’an Jiaotong University, Xi’an; 710049, China; (4) Institute of Artificial Intelligence and Robotics, Xi’an Jiaotong University, Xi’an; 710049, China; (5) The State Key Laboratory of Astronautic Dynamics, China Xi’an Satellite Control Center, Xi’an; 710043, China; (6) PLA 63768, Xi’an; 710600, China; (7) The Beijing Institute of Remote Sensing Information, Beijing; 100192, China
    Publication Year:2024
    Volume:24
    Issue:4
    Article Number:1130
    DOI Link:10.3390/s24041130
    數(shù)據(jù)庫ID(收錄號):20240815619383
  • Record 26 of

    Title:Multi-Dimensional Fusion of Spectral and Polarimetric Images Followed by Pseudo-Color Algorithm Integration and Mapping in HSI Space
    Author Full Names:Guo, Fengqi(1,2); Zhu, Jingping(1); Huang, Liqing(2); Li, Feng(1); Zhang, Ning(3); Deng, Jinxin(1); Li, Haoxiang(1); Zhang, Xiangzhe(1); Zhao, Yuanchen(1); Jiang, Huilin(4); Hou, Xun(1)
    Source Title:Remote Sensing
    Language:English
    Document Type:Journal article (JA)
    Abstract:Spectral–polarization imaging technology plays a crucial role in remote sensing detection, enhancing target identification and tracking capabilities by capturing both spectral and polarization information reflected from object surfaces. However, the acquisition of multi-dimensional data often leads to extensive datasets that necessitate comprehensive analysis, thereby impeding the convenience and efficiency of remote sensing detection. To address this challenge, we propose a fusion algorithm based on spectral–polarization characteristics, incorporating principal component analysis (PCA) and energy weighting. This algorithm effectively consolidates multi-dimensional features within the scene into a single image, enhancing object details and enriching edge features. The robustness and universality of our proposed algorithm are demonstrated through experimentally obtained datasets and verified with publicly available datasets. Additionally, to meet the requirements of remote sensing tracking, we meticulously designed a pseudo-color mapping scheme consistent with human vision. This scheme maps polarization degree to color saturation, polarization angle to hue, and the fused image to intensity, resulting in a visual display aligned with human visual perception. We also discuss the application of this technique in processing data generated by the Channel-modulated static birefringent Fourier transform imaging spectropolarimeter (CSBFTIS). Experimental results demonstrate a significant enhancement in the information entropy and average gradient of the fused image compared to the optimal image before fusion, achieving maximum increases of 88% and 94%, respectively. This provides a solid foundation for target recognition and tracking in airborne remote sensing detection. ? 2024 by the authors.
    Affiliations:(1) Key Laboratory for Physical Electronics and Devices of the Ministry of Education, Shaanxi Key Laboratory of Information Photonic Technique, Xi’an, Xi’an, 710049, China; (2) Non Equilibrium Condensed Matter and Quantum Engineering Laboratory, The Key Laboratory of Ministry of Education, School of Physics, Xi’an, Xi’an, 710049, China; (3) Key Laboratory of Spectral Imaging Technology, Xi’an Institute of Optics and Precision Mechanics of CAS, Xi’an; 710119, China; (4) National and Local Joint Engineering Research Center of Space Optoelectronics Technology, Changchun University of Science and Technology, Changchun; 130022, China
    Publication Year:2024
    Volume:16
    Issue:7
    Article Number:1119
    DOI Link:10.3390/rs16071119
    數(shù)據(jù)庫ID(收錄號):20241615921118
  • Record 27 of

    Title:Interlayer coupled dual-layer metagratings for broadband and high-efficiency anomalous reflection
    Author Full Names:Luo, Yijie(1,2); Yang, Ruisheng(1,2,3); Xie, Lingyun(1,2,3); Xu, Weijie(1,2); Fan, Yuancheng(4); Wei, Zeyong(1,2,3); Wang, Zhanshan(1,2,3); Cheng, Xinbin(1,2,3)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:Recent progress in metagratings highlights the promise of high-performance wavefront engineering devices, notably for their exterior capability to steer beams with near-unitary efficiency. However, the narrow operating bandwidth of conventional metagratings remains a significant limitation. Here, we propose and experimentally demonstrate a dual-layer metagrating, incorporating enhanced interlayer couplings to realize high-efficiency and broadband anomalous reflection within the microwave frequency band. The metagrating facilitated by both intralayer and interlayer couplings is designed through the combination of eigenmode expansion (EME) algorithm and particle swarm optimization (PSO) to significantly streamline the computational process. Our metagrating demonstrates the capacity to reroute a normally incident wave to +1 order diffraction direction across a broad spectrum, achieving an average efficiency approximately 90% within the 14.7 to 18 GHz range. This study may pave the way for future applications in sophisticated beam manipulations, including spatial dispersive devices, by harnessing the intricate dynamics of multi-layer metagratings with complex interlayer and intralayer interactions. ? 2024 Optica Publishing Group.
    Affiliations:(1) Institute of Precision Optical Engineering, School of Physics Science and Engineering, Tongji University, Shanghai; 200092, China; (2) MOE Key Laboratory of Advanced Micro-Structured Materials, Shanghai; 200092, China; (3) Shanghai Frontiers Science Research Base of Digital Optics, Tongji University, Shanghai; 200092, China; (4) Department of Applied Physics, School of Science and Shenzhen Research & Development Institute, Northwestern Polytechnical University, Xi'an; 710129, China
    Publication Year:2024
    Volume:32
    Issue:12
    Start Page:21594-21605
    DOI Link:10.1364/OE.524006
    數(shù)據(jù)庫ID(收錄號):20242416251695
  • Record 28 of

    Title:Observation of 2 μm multiple annular structured vortex pulsed beams by cavity-mode tailoring
    Author Full Names:Zhu, Qiang(1,2); Song, Xiaozhao(1); Li, Luyao(1); Kang, Hui(1,2); Yao, Tianchen(1,2); Liu, Guangmiao(1,2); Miao, Kairui(1); Zhou, Wei(1,2); Wang, Haotian(1,2); Xu, Xiaodong(1); Jia, Baohua(3); Wang, Yishan(4); Wang, Fei(2); Shen, Deyuan(1,2)
    Source Title:Optics Letters
    Language:English
    Document Type:Journal article (JA)
    Abstract:In the past few years, annular structured beams have been extensively studied due to their unique "doughnut" structure and characteristics such as phase and polarization vortices. Especially in the 2 μm wavelength range, they have shown promising applications in fields such as novel laser communication, optical processing, and quantum information processing. In this Letter, we observed basis vector patterns with orthogonality and completeness by finely cavity-mode tailoring with end-mirror space position in a Tm:CaYAlO4 laser. Multiple annular structured beams including azimuthally, linearly, and radially polarized beams (APB, LPB, and RPB) operated at a Q-switched mode-locking (QML) state with a typical output power of ~18 mW around 1962 nm. Further numerical simulation proved that the multiple annular structured beams are the coherent superposition of different Hermitian Gaussian modes. Using a self-made M–Z interferometer, we have demonstrated that the obtained multiple annular beams have a vortex phase with orbital angular momentum (OAM) of l = ±1. To the best of our knowledge, this is the first observation of vector and scalar annular vortex beams in the 2 μm solid-state laser. ? 2024 Optica Publishing Group.
    Affiliations:(1) Jiangsu Key Laboratory of Advanced Laser Materials and Devices, School of Physics and Electronic Engineering, Jiangsu Normal University, Xuzhou; 221116, China; (2) Jiangsu Institute of Mid Infrared Laser Technology & Applications, Xuzhou; 221000, China; (3) The Australian Research Council (ARC) Industrial Transformation Training Centre in Surface Engineering for Advanced Materials (SEAM), RMIT University, Melbourne; VIC; 3000, Australia; (4) State Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China
    Publication Year:2024
    Volume:49
    Issue:13
    Start Page:3709-3712
    DOI Link:10.1364/OL.524370
    數(shù)據(jù)庫ID(收錄號):20242816657496
  • Record 29 of

    Title:Colloidal Nanoplatelets-Based Soft Matter Technology for Photonic Interconnected Networks: Low-Threshold Lasing and Polygonal Self-Coupling Microlasers
    Author Full Names:Duan, Rui(1); Thung, Yi Tian(1,2); Zhang, Zitong(1,3); Durmusoglu, Emek Goksu(1,2); He, Yichen(4); Xiao, Lian(1); Lee, Calvin Xiu Xian(1); Lew, Wen Siang(1); Zhang, Lin(4); Li, Hanyang(5); Yang, Jun(6); Demir, Hilmi Volkan(1,2,7,8); Sun, Handong(1)
    Source Title:Laser and Photonics Reviews
    Language:English
    Document Type:Journal article (JA)
    Abstract:Soft matter-based microlasers are widely regarded as excellent building blocks for realizing photonic interconnected networks in optoelectronic chips, owing to their flexibility and functional network topology. However, the potential of these devices is hindered by challenges such as poor lasing stability, high lasing threshold, and gaps in knowledge regarding cavity interconnection characteristics. In this study, the first demonstration of a high-quality, low-threshold nanoplatelets (NPLs)-based polymer microfiber laser fabricated using capillary immersion techniques and its photonic interconnected networks are presented. CdSe/CdS@Cd1-xZnxS core/buffer shell@graded-shell NPLs with high optical gain characteristics are adopted as the gain medium. The study achieves a lasing threshold below 14.8 μJ cm?2, a single-mode quality (Q)-factor of ≈5500, and robust lasing stability in the fabricated NPLs-based microfibers. Furthermore, the study pioneers the exploration of polygonal self-coupling microlasers and the optical characteristics of their interconnected fiber network. Based on the signal generation mechanism observed in the photonic networks, an interconnected NPLs-based fiber network structure achieving single-mode lasing emission and laser mode modulation is successfully designed. The work contributes a novel method for realizing microlasers fabricated via soft-matter technologies and provides a key foundation and new insights for unit design and programming for future photonic network systems. ? 2023 Wiley-VCH GmbH.
    Affiliations:(1) Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore; 637371, Singapore; (2) LUMINOUS! Centre of Excellence for Semiconductor Lighting and Displays, The Photonics Institute, School of Electrical and Electronic Engineering, Nanyang Technological University, Singapore; 639798, Singapore; (3) Xi'an Modern Chemistry Research Institute, Shaanxi, Xi'an; 710065, China; (4) School of Precision Instruments and Optoelectronics Engineering, Tianjin University, Tianjin; 300072, China; (5) College of Physics and Optoelectronic Engineering, Harbin Engineering University, Harbin; 150001, China; (6) Guangdong Provincial Key Laboratory of Information Photonics Technology, College of Information Engineering, Guangdong University of Technology, Guangzhou; 510006, China; (7) School of Materials Science and Engineering, Nanyang Technological University, Singapore; 639798, Singapore; (8) Department of Electrical and Electronics Engineering, Department of Physics, UNAM—Institute of Materials Science and Nanotechnology, Bilkent University, Ankara; 06800, Turkey
    Publication Year:2024
    Volume:18
    Issue:1
    Article Number:2300745
    DOI Link:10.1002/lpor.202300745
    數(shù)據(jù)庫ID(收錄號):20234615068818
  • Record 30 of

    Title:All-PM Yb-doped mode-locked fiber laser with high single pulse energy and high repetition frequency
    Author Full Names:Fu, Chaohui(1,2); Song, Yuanqi(1,2); Tao, Jianing(1,2); Zhang, Pu(3); Qi, Mei(4); Chen, Haowei(1,2); Bai, Jintao(1,2)
    Source Title:Journal of Optics (United Kingdom)
    Language:English
    Document Type:Journal article (JA)
    Abstract:We demonstrate an all-polarization-maintaining (PM) ytterbium (Yb)-doped fiber laser with a figure-of-9 structure to generate mode-locked pulses with high single pulse energy and high repetition frequency. By exploiting the nonlinear amplifying loop mirror, a stably self-started mode-locking is achieved with a spectrum bandwidth of 13 nm and a pulse duration of 4.53 ps. The fundamental frequency is 97.966 MHz at the maximum output power of 143 mW in single pulse mode-locked operation, corresponding to the single pulse energy is 1.46 nJ. The output pulses maintain both high repetition frequency and high single-pulse energy. This laser oscillator can be an ideal seed source for applications such as high-energy amplifiers. ? 2024 IOP Publishing Ltd.
    Affiliations:(1) State Key Laboratory of Energy Photon-Technology in Western China, International Collaborative Center on Photoelectric Technology and Nano Functional materials, Institute of Photonics & Photon-technology, Northwest University, Xi’an; 710127, China; (2) Shaanxi Engineering Technology Research Center for Solid State Lasers and Application, Shaanxi Provincial Key Laboratory of Photo-electronic Technology, Northwest University, Xi’an; 710127, China; (3) State Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (4) School of Information Science and Technology, Northwest University, Xi’an; 710127, China
    Publication Year:2024
    Volume:26
    Issue:7
    Article Number:075502
    DOI Link:10.1088/2040-8986/ad4612
    數(shù)據(jù)庫ID(收錄號):20242216152311
  • Record 31 of

    Title:Multi-level efficient 3D image reconstruction model based on ViT
    Author Full Names:Zhang, Renhao(1,2); Hu, Bingliang(1); Chen, Tieqiao(1); Zhang, Geng(1); Li, Siyuan(1); Chen, Baocheng(1,2); Liu, Jia(1,3,5); Jia, Xinyin(1); Wang, Xing(4); Su, Chang(2,4); Li, Xijie(1); Zhang, Ning(1); Qiao, Kai(2,4)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:Single-photon LIDAR faces challenges in high-quality 3D reconstruction due to high noise levels, low accuracy, and long inference times. Traditional methods, which rely on statistical data to obtain parameter information, are inefficient in high-noise environments. Although convolutional neural networks (CNNs)-based deep learning methods can improve 3D reconstruction quality compared to traditional methods, they struggle to effectively capture global features and long-range dependencies. To address these issues, this paper proposes a multi-level efficient 3D image reconstruction model based on vision transformer (ViT). This model leverages the self-attention mechanism of ViT to capture both global and local features and utilizes attention mechanisms to fuse and refine the extracted features. By introducing generative adversarial ngenerative adversarial networks (GANs), the reconstruction quality and robustness of the model in high noise and low photon environments are further improved. Furthermore, the proposed 3D reconstruction network has been applied in real-world imaging systems, significantly enhancing the imaging capabilities of single-photon 3D reconstruction under strong noise conditions. ? 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
    Affiliations:(1) Key Laboratory of Spectral Imaging Technology of CAS, Xi’an Institute of Optics and Precision Mechanics of Chinese Academy of Sciences, Xi’an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) State Key Laboratory of Tropical Oceanography, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou; 510301, China; (4) Key Laboratory of Ultra-fast Photoelectric Diagnostics Technology, Chinese Academy of Sciences, Xi’an; 710119, China; (5) State Key Laboratory of Satellite Ocean Environment Dynamics, Second Institute of Oceanography, Ministry of Natural Resources, Hangzhou; 310012, China
    Publication Year:2024
    Volume:32
    Issue:19
    Start Page:33917-33936
    DOI Link:10.1364/OE.535211
    數(shù)據(jù)庫ID(收錄號):20243817055804
  • Record 32 of

    Title:Equivalent Mechanical Model of a Microchannel Plate
    Author Full Names:Zhang, Shengdan(1,2); Bai, Yonglin(1); Cao, Weiwei(1,2); Qin, Junjun(1); Gao, Jiarui(1); Chang, Le(3); Liu, Beihong(3); Hu, Zexun(4); Chu, Zhujun(3); Cong, Xiaoqing(4); Dong, Yongwei(5); Wang, Zhigang(5)
    Source Title:Measurement Science Review
    Language:English
    Document Type:Journal article (JA)
    Abstract:The microchannel plate (MCP) is an electron multiplier with millions of micro through-holes that must withstand strong vibrations and enormous shocks in spaceborne detectors. To ensure the reliability and robustness of the MCP in space applications, we proposed an equivalent mechanical model of the MCP to investigate its mechanical properties, since the direct creation of the finite element model using the finite element method (FEM) is not feasible. Then, we developed a test system to verify the effectiveness of the equivalent mechanical model. The results show that the error of harmonic response analysis and the test result is less than 10 %, which is acceptable. Finally, we conducted parametric studies of the MCPs and obtained the equivalent mechanical model of the MCPs with different geometric parameters. This study will help researchers to optimize the MCP for aerospace-grade detectors. ? 2024 Shengdan Zhang et al., published by Sciendo.
    Affiliations:(1) Key Laboratory of Ultrafast Photoelectric Diagnostic Technology, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xinxi Road, No.17, Xi’an; 710119, China; (2) University of Chinese Academy of Sciences, Yanxi Lake East Road, No.1, Beijing; 100049, China; (3) North Night Vision Technology Co., Ltd., Hongwai Road, No.5, Kunming; 650217, China; (4) Nanjing Branch of North Night Vision Technology Co., Ltd., Kangping Street, No.2, Nanjing; 211102, China; (5) Institute of High Energy Physics, Chinese Academy of Sciences, Yuquan Road, No.19, Beijing; 10049, China
    Publication Year:2024
    Volume:24
    Issue:5
    Start Page:174-182
    DOI Link:10.2478/msr-2024-0023
    數(shù)據(jù)庫ID(收錄號):20244617363503
  • Record 33 of

    Title:Optical fibre based artificial compound eyes for direct static imaging and ultrafast motion detection
    Author Full Names:Jiang, Heng(1,2); Tsoi, Chi Chung(1,2); Yu, Weixing(3); Ma, Mengchao(4); Li, Mingjie(1); Wang, Zuankai(5); Zhang, Xuming(1,2,6)
    Source Title:Light: Science and Applications
    Language:English
    Document Type:Journal article (JA)
    Abstract:Natural selection has driven arthropods to evolve fantastic natural compound eyes (NCEs) with a unique anatomical structure, providing a promising blueprint for artificial compound eyes (ACEs) to achieve static and dynamic perceptions in complex environments. Specifically, each NCE utilises an array of ommatidia, the imaging units, distributed on a curved surface to enable abundant merits. This has inspired the development of many ACEs using various microlens arrays, but the reported ACEs have limited performances in static imaging and motion detection. Particularly, it is challenging to mimic the apposition modality to effectively transmit light rays collected by many microlenses on a curved surface to a flat imaging sensor chip while preserving their spatial relationships without interference. In this study, we integrate 271 lensed polymer optical fibres into a dome-like structure to faithfully mimic the structure of NCE. Our ACE has several parameters comparable to the NCEs: 271 ommatidia versus 272 for bark beetles, and 180o field of view (FOV) versus 150–180o FOV for most arthropods. In addition, our ACE outperforms the typical NCEs by ~100 times in dynamic response: 31.3 kHz versus 205 Hz for Glossina morsitans. Compared with other reported ACEs, our ACE enables real-time, 180o panoramic direct imaging and depth estimation within its nearly infinite depth of field. Moreover, our ACE can respond to an angular motion up to 5.6×106 deg/s with the ability to identify translation and rotation, making it suitable for applications to capture high-speed objects, such as surveillance, unmanned aerial/ground vehicles, and virtual reality. ? The Author(s) 2024.
    Affiliations:(1) Department of Applied Physics, The Hong Kong Polytechnic University, 999077, Hong Kong; (2) Photonics Research Institute (PRI), The Hong Kong Polytechnic University, 999077, Hong Kong; (3) Key Laboratory of Spectral Imaging Technology, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (4) Anhui Province Key Laboratory of Measuring Theory and Precision Instrument, School of Instrument Science and Opto-Electronics Engineering, Hefei University of Technology, Hefei; 230009, China; (5) Department of Mechanical Engineering, The Hong Kong Polytechnic University, 999077, Hong Kong; (6) Research Institute for Advanced Manufacturing (RIAM), The Hong Kong Polytechnic University, 999077, Hong Kong
    Publication Year:2024
    Volume:13
    Issue:1
    Article Number:256
    DOI Link:10.1038/s41377-024-01580-5
    數(shù)據(jù)庫ID(收錄號):20243817075668
  • Record 34 of

    Title:Monolithic PMN-39PT nanograting-assisted second harmonic generation enhancement
    Author Full Names:Li, Tianlun(1); Liu, Xin(2); Lu, Yang(3); Gao, Duorui(4); Zhang, Kai(3); Gan, Xuetao(1); Wei, Xiaoyong(2); Xu, Zhuo(2); Zhang, Lei(2)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:Second harmonic generation plays a vital role in frequency conversion which mutually promotes the laser technology and allows the wavebands extension of new coherent source. The monolithic crystals are supposed to be a superior choice for harmonic generation due to long interaction distance, however, the phase-mismatch brought a sharp reduction in the conversion efficiency. Although birefringent phase-matching and quasi-phase-matching techniques are commonly utilized to fill the phase gap in monolithic crystals, these techniques are limited by the natural refractive index of crystal and the domain engineering, respectively. In recent years, subwavelength structures evolve as a flexible scheme to realize phase matching by engineering the geometry features of crystals. Here, structured nanogratings are designed and fabricated on a monolithic PMN-39PT (Pb(Mg1/3Nb2/3)O3-0.39PbTiO3) substrate, a novel ferroelectric crystal with promising optical prospect, for enhancing second harmonic generation, where birefringent or quasi phase-matching is hard to achieve. The nanograting-assisted second harmonic generation enhancement is observed which is not limited by the availability of thin crystalline films. Meanwhile, a boost in the second harmonic signal synchronously promotes the cascading third harmonic generation. This method may provide an alternative solution for enhanced harmonic generation on monolithic substrates and develop potential nonlinear optical materials for frequency conversion. ? 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
    Affiliations:(1) School of Microelectronics, Northwestern Polytechnical University, Xi’an; 710072, China; (2) Key Laboratory of Physical Electronics and Devices of Ministry of Education, Shaanxi Key Laboratory of Information Photonic Technique, School of Electronic Science and Engineering, Xi’an Jiaotong University, Xi’an; 710049, China; (3) CAS Key Laboratory of Nanophotonic Materials and Devices, Key Laboratory of Nanodevices and Applications, i-Lab, Suzhou Institute of Nano-Tech and Nano-Bionics (SINANO), Chinese Academy of Sciences, Suzhou; 215123, China; (4) State Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics of CAS, Xi’an; 710119, China
    Publication Year:2024
    Volume:32
    Issue:6
    Start Page:9237-9244
    DOI Link:10.1364/OE.510869
    數(shù)據(jù)庫ID(收錄號):20241215768412
  • Record 35 of

    Title:Plasma assisted pulsed laser deposition of WO3 films for thermochromism
    Author Full Names:Wan, Feng(1); Li, Lequn(2); Yao, Chujun(1); Jiang, Kai(3); Hu, Zhigao(3); Xu, Ning(1); Sun, Jian(1,4); Wu, Jiada(1)
    Source Title:Materials Chemistry and Physics
    Language:English
    Document Type:Journal article (JA)
    Abstract:Tungsten trioxide (WO3) is one of the extensively investigated transition metal oxides. Its excellent chromogenic properties make WO3 promising for a variety of scientific and technological applications. We report a new method for reactively depositing WO3 films by plasma assisted pulsed laser deposition that combines electron cyclotron resonance microwave discharge and pulsed laser ablation. The plasma formed during film deposition was spectroscopically characterized by optical emission measurement, revealing that the plasma contains high density of reactive gaseous oxygen and tungsten species which are essential for efficiently synthesizing WOx precursors and depositing WO3 films. The structure of the deposited films and the effect of post-deposition thermal annealing on the film structure were characterized by X-ray diffraction and Raman spectroscopy. The as-deposited WO3 film appears amorphous in nature. Annealing resulted in the growth of crystalline grains and the improvement in the crystallinity of monoclinic WO3. Optical properties of the prepared WO3 films were studied by measuring ultraviolet–visible–near infrared transmission spectra. With the increase of annealing temperature, the WO3 films show a continuous change in color, decline in transmittance, red shift in absorption edge, and narrowing in band gap, clearly manifesting the thermochromic features of the deposited WO3 films. ? 2024 Elsevier B.V.
    Affiliations:(1) Engineering Research Center of Ultra-Precision Optical Manufacturing (Shanghai), Department of Optical Science and Engineering, School of Information Science and Technology, Fudan University, Shanghai; 200433, China; (2) School of Optoelectronic Engineering, XiDian University, Shanxi, Xi'an; 710071, China; (3) Technical Center for Multifunctional Magneto-Optical Spectroscopy (Shanghai), Department of Materials, East China Normal University, Shanghai; 200241, China; (4) Yiwu Research Institute of Fudan University, Zhejiang, Yiwu; 322000, China
    Publication Year:2024
    Volume:314
    Article Number:128880
    DOI Link:10.1016/j.matchemphys.2024.128880
    數(shù)據(jù)庫ID(收錄號):20240215360718
  • Record 36 of

    Title:Differentiable design of freeform diffractive optical elements for beam shaping by representing phase distribution using multi-level B-splines
    Author Full Names:Liao, Qingming(1,2); Wang, Haoqiang(3); Feng, Zexin(1,2); Li, Mengmeng(1,2); Luo, Yi(4); Mao, Xianglong(5)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:The generation of a specific laser beam profile on the work surface is key to various laser beam shaping tasks, relying heavily on diffractive optical elements (DOEs). Most beam-shaping DOEs are designed using iterative Fourier transform algorithms (IFTAs), which generally have slow convergence and prone to stagnate at local minima. Moreover, the microreliefs generated by IFTAs tend to be irregular, complicating manufacturing and causing uncontrolled scattering of light. We propose a differentiable DOE design method that applies a phase-smoothness constraint using multi-level B-splines. A multi-scale gradient-descent optimization strategy, naturally linked with the multi-level B-splines, is employed to robustly determine the optimized phase distribution that is fully continuous. This, in turn, can lead to more regular DOE microreliefs, which can simplify the fabrication process and be less sensitive to changes in wavelength and working distance. Furthermore, our method can also design a fully continuous freeform lens, distinguished from most freeform lens design approaches by its foundation in physical optics rather than geometrical optics. Simulation and experimental results of several design tasks demonstrate the effectiveness of the proposed method. ? 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
    Affiliations:(1) Beijing Engineering Research Center of Mixed Reality and Advanced Display, School of Optics and Photonics, Beijing Institute of Technology, Beijing; 100081, China; (2) MOE Key Laboratory of Optoelectronic Imaging Technology and Systems, Beijing Institute of Technology, Beijing; 100081, China; (3) College of Physics and Optoelectronic Engineering, Shenzhen University, Guangdong, Shenzhen; 518060, China; (4) Beijing National Research Center for Information Science and Technology, Department of Electronic Engineering, Tsinghua University, Beijing; 100084, China; (5) The New Technology Laboratory of Space Photon Information, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Shaanxi, Xi’an; 710119, China
    Publication Year:2024
    Volume:32
    Issue:23
    Start Page:41041-41056
    DOI Link:10.1364/OE.533298
    數(shù)據(jù)庫ID(收錄號):20244717382307
九色成人AV在线| 综合性爱网| 另类五月婷婷| 久久色婷婷| 亚洲精品另类| 久久综合五月天激情小说网站 | 九九偷拍网| 久久综合99综合| 午夜免费试看| 亚洲AV中文在线| 色日本五月天| 性生活久久人妻| 六月婷五月丁香| 五月综合视频在线| 三级三久久线久久99久目本WW| 成人在线高清| 丁香伊人五月色婷婷五十路| 99超碰欧美| 午夜成人片400| 色五月琪琪| 玖玖99免费视频| 五月天激情综合| 色色色色五月| 久久色情综合免费网站| 99亚洲精品视频| 婷婷5月九九| 丁香婷婷啪啪啪| 婷婷五月天影视网址| 激情 五月 婷婷 丁香| 六月丁香久久| 在线中文字幕视频| 激情AV| 欧美va视频| www.久久久久久久| 91丨九色丨丰满人妖| 国产4P视频精品五区| 丁香色影院| 久久婷鲁| 超碰99热在线观看| 婷婷久久影院| 五月天激情四射网站| 亚洲久艹| 99热欧美精品| 4399在线观看免费高清黄色视频| 亚洲激情视频在线观看| 五月玖玖| 色热久资源| 五月天狠狠网站| 精品无码av丁香五月激情| 久久66er久久| 久久性爱视频免费| 激情综合网 激情五月天| 新激情五月天色播| 婷婷伊人网| 五月综合激情视频在线| 偷拍91九色| www.maotanji.com| www.久久99| 亚洲亚洲人成综合网络| 公的粗大挺进了我的密道| 色婷婷99| 1024在线视频| 欧美超级视频97| 色伊人婷婷| 超碰成人免费| 久久五月天合网| 十月丁香婷婷| 丁香婷婷伊人| 激情五月天小说|五月天开心激情网|亚洲精品国产自在现线|黄色五月天 | 人妻丰满精品一区二区A片| 国产精品国产成人国产三级| 五月天色色无码| 丁香亭亭激情四射| 成人中文字幕在线| 色色亚洲无码| 婷婷五月色網站| 五月丁香激情综合网| 六月婷婷啪啪| 99视频在线精品| 亚洲狠狠色丁香婷婷综合久久| 久久九九99视频| 探花搜索结果 - 黄上黄| 久青操| 欧亚洲在线高清视频| 玖玖99福利| 精品成人无码A片观看香草视频| 婷婷五月丁香六月天亚洲综合| 日韩1区2区| 五月丁香无码| 五月婷婷深深爱| 五月天婷婷涩涩| 99热爱爱干干日| 很很操96| www,婷婷| caop在线| 99re在线观看| www.9797国产| 99re这里只有精品国产99| 色婷婷五月亚洲| 最近2019中文字幕大全第二页 | 色五月首页| 色五月开心五月激情五月| 国产精品激情五月天色婷婷| 激情亭亭五月| 久久er99热精品一区二区| 五月婷狠狠| 六月婷婷综合激情| 人色五月天婷婷| 亚洲视频伍月婷婷| 97色婷婷成人综合在线观看| 丁香五月婷婷总啪啪| 99re在线视频| 久久这里只有国产精品视频| 婷婷五月天天爽| 97精品人人A片免费看| 热99.com婷婷| 婷婷丁香69精华| 五月天影院| 色色狼人综合| 亚洲一区二区色图-亚洲精品国产精品乱码-成人AV | 色爱综合网| 婷婷天天综合| 欧美丁香五月97色| 一本色道久久综合狠狠躁一二三| 色欲天天综合| 亚洲aV写真天天综合网久久| 亚洲另类电影| 婷婷玖玖丁香| 精品一区二区三区木瓜| 天天操中文字幕| 欧美 色婷婷| 激情黄色小说色五月| 天天拍夜夜爽| 五月激情站| 美女爆乳18禁www久久久久久| 色狠狠综合| 五月婷婷久草在线视频综合| 九九激情| 超碰无码318604| 内射激情在线| 色五月综合在线| 亚洲成人丁香花| www.久久| 五月丁香激情综合| 日日操夜夜擼| 超碰国产在线| 九九大香蕉黄色影院| 成人综合视频网址| 开心婷婷五月激情网小说| 色色性爱视频| 亚洲婷婷性爱| 人妻自慰在线| 97色婷婷| 五月天之色情综合网| 日本成人噜噜噜噜噜| 日本一级一片免费视频| www.玖玖婷婷在线| 婷婷六月激情啪啪| 五月婷婷六月丁香| 玖玖在线| www.9797国产| 超碰五月婷婷五月天| 成人婷婷桔色| 六月丁香久久| 九九re精品视频在线观看| 韩国三级五月天婷婷。| 激情内射人妻1区2区3区| 五月婷婷深深爱| 丁香六月婷婷综合在线| 午夜天堂一区人妻| 热99国产精品| 六月婷婷视频| www.99精品视频| 99久久九九| 激情五月婷婷视频一区二区三区| 婷婷伊人综合中文字幕| 激情五月天视频| 99热综合在线观看| 亚洲狠狠狠色婷婷综合激情久久久| 99九九玖玖| 激情丁香五月| 亚洲欧美国产高清vA在线播放| av大片在线| 婷婷色色狠狠| 色婷婷网| 色五月激情| 97色婷婷| 国产黄色一级片| 五月婷婷丁香av| 成人无码精品1区2区3区免费看| 26.uuu丁香五月婷婷| 九九热国产| 美女婷婷激情亚洲| 五月婷综合性中心| 黑人巨粗进入警花疼哭A片| 91超碰人人操| 五月丁香花视频| 玖玖99精品视频| 综合激情五月天六月婷免费视频| 99婷五月| 五月天综合影院| 在线中文AV| www.色窝| 超碰久热| 丁香五月自拍| 亚洲亚洲人成综合网络| 丁香婷婷综合激情五月色,开心五月丁香花综合网,激情综合五月亚洲婷婷,五月天 | 婷久看人爽| 色婷婷小说| 99久久婷婷| 久99久精品| 九九这里是免费的视频5| 荡乳尤物3pH| 99狠狠| 久久久久人妻| 97欧美在线| 国产乱妇无乱码大黄AA片| 任你操精品免费| 婷婷五月天亚洲五码| 超碰97色| 成全二人免费| 激情99| 在线观看欧美| 天堂A∨在线| 夜夜 操无码| 色九网| 色色五月天激情| 亚洲另类婷婷五月丁香在线播放| 性爱视频99| av婷婷丁香 六月| 婷婷基地爱| 人人爽人人射-美女久久久久久久久久-成人AV| 99热最新| 欧美激情Va| 在线播放人妻| 99视频网| 99色久| 97色啪| 色综合网址| 亭亭五月色男人| 99视频地址| 丁香五月天视频| 狠婷婷五月| 久久9热综合| 久久久久人妻网址| 五月综合激情| 激情开心五月天| 色噜噜狠狠色综合日日免费| 婷婷五月丁香青青草在线| 婷婷五月天综合色| 美欧成人视频| 91偷拍视频| 欧美激情五月天婷婷| 少妇性按摩无码中文A片| 五月激情丁香| 日本久久精品18| 99视频自拍| 婷婷五月天另类视频| 九月丁香八月婷婷加勒比| 日本欧特黄色刺激一区影视久精品无码| 99久精品视频| 色综合色色| 另类图片激情五月天| 六月婷婷色色网| 五月婷婷六月丁香综合在线| 激情综合五月天| 五月天激情综合| 五月久久亚洲| www.99热在线观看| 国产精品a无线| 婷婷五月天啪啪| 国产精品日日躁夜夜躁| 天天操夜夜操| 亚洲成人在线五月天| 日韩AV片| 色婷婷中文| 开心五月婷婷| 欧美黑人巨大猛烈cuckold| 日韩小视频在线99| 五月丁香婷婷在线| 亚洲 无码 中文字幕 中出| 综合爱久久| 日韩另类| 日日爽天天| 久久九九玖玖| 91se精品国产| 五月激情婷婷综合| 视频这里只有精品16| 成人免费网站免费看| 91九色精品熟女内射| 五月天夜夜爱夜夜操| 丁香婷婷色色| 五月综合激情网| 丁香五月激情五月| 五月天激情综合网站| 六月婷婷天堂| 婷婷五月天成人| 五月丁香激情欧洲啪啪| 五月激情啪啪| 射久久丁香五月| 99精品视频网| 九九视频在线| 五月天久久婷婷婷| 国产熟女大叫受不了| 欧美色综合天天久久综合精品| 五月丁香亚洲婷婷| 久久五月天合网| 涩 五月 婷婷 狠狠| 亚洲中文乱字字幕在线永久| 国产成人亚洲综合A∨婷婷| 99视频色在线观看| 欧美月久久| 婷婷五月花| 天天综合五月天| 午夜无码精品色综合久久| 91九色丨国产丨爆乳| 色婷丁香91| 大香蕉五月婷婷| 五月停停丁香| 激情欧美婷五月| 色娸娸综合网| 色欲AVV| 五月婷六月| 97热这里只有精品| 五月天婷婷开心| 激情综合五月天| 九月婷婷人人操人人舔人人爱| 99re思思久久| 九九这里只有精品| 婷婷六月激情综合| 千人斩操逼| 在线成人网址| 99热官网精品在线| 91精品国产综合久久久不卡电影| 玖玖综合色| 亚洲最大视频| 五月婷婷狠狠干| 久久这里只有精品5| 人妻中文字幕网| yazhoujiqingav| 超碰人妻在线| 97se视频在线| 综合网五月| 日本成人小说婷婷六月| 色婷婷久久综合久色| 综合一区二区三区| 丁香五月婷婷久久久| 亚洲国产精品VA在线看黑人| 99热精品无码| 五月婷婷色影院| 五月天成人综合| 99亚洲色| 婷婷一本和五月丁香| 色婷婷丁香五月| 亚洲 视频 导航 一区| 热婷婷av| 亚洲成人网址在线观看| 伊人综合网站| 综合久久99| 91视频一起草| 国产AV午夜精品一区二区入口| 激情五月深爱婷婷| 免费观看的AV| 伍月激情天| 99综合色色色| 丁香六月婷婷久久综合| 亚洲在线操| 婷婷激情五月视频| 影院久久久| 久久久宗合视频88| 婷婷色五月大香蕉在线| 超级碰碰97在线| 国产SUV精品一区二区6| 无码色色色| 色五月婷婷影院| 91免费看片| 婷婷六月亚洲综合| 欧美乱大交XXXXX潮喷l头像| 欧美精品狠狠色丁香婷婷| 婷婷婷婷色| 婷婷丁香人妻天天| 99热在线观看亚洲区| 色大综合| 亚洲久久婷婷| 日本九九热| 婷婷五月天激情综合深爱| 色人五月婷婷| 五六月丁香激情视频| 五月婷婷丁香大陆免费| 五月永久激情| 欧美综合丁香网| 五月丁香六月婷婷色| 99小精品| 亚洲天堂AAA| 五月丁香六月激情狠狠| 婷婷丁香成人网址| 99热国产在线| 丁香激情五月少妇| 日日爽夜夜爽| 中文字幕无码人妻AAA片| 亚洲爆乳无码精品AAA片蜜桃 | 啪啪操操| 婷久久| 成人 在线 日韩| 婷婷色中文字幕| 五月丁欧美| 激情网五夜婷婷| 国产在线6| 婷婷五月天伦理| 日在线V视频在线播放| 五月天婷婷色播| 人人干AV| 综合色激情| 91精品久久久久、久五月天| 大战熟女丰满人妻AV| 色婷婷五月天成人网| 人妻久热| jiZZdr| 99视频| www五月婷婷| 亚洲啪啪自拍| 丁香 亚洲 久久| 五月天丁香网站| 99久热| 七七九九色色| 婷婷夜夜夜夜| 99精品福利视频| 丰满的女邻居在线观看| 狠狠色婷婷| 国产毛多水多女人A片| 丁香五月天AV在线 | www.成人婷婷综合| 五月丁香综合| 99这里| www.97视频| 日本偷拍九九九| 9精品视频在线| 九九碰九九爱97超碰| 亚洲综合网激情小说| 丁香五月激情无码视频| 五月激情婷婷国产精品久久久久久| 嫩草AV久久伊人妇女超级A| 99亚洲天堂| www,999日本色| 综合 蜜月 婷婷| 日本久久高清| 最新精品视频99| 五月天夜夜爱夜夜操| 99免费在线视频| 欧美日朝成人| 五月婷婷之激情五月| 五月天网站免费欧美| 性天堂久久| 五月天婷婷久久| 六六久久黄色| 8区视频在线| 婷婷色无码| 丁香五月婷综合网| 婷婷久久综合| 97涩婷婷| 五月激情综合网| 婷婷丁香五月激情图片| 狠狠狠狠狠干| 丁香婷婷影院| 色色草97| 99er这里只有精品视频| 99热这里只有免费精品| 五月天久久婷婷| 综合久久丁丁香婷| 综合激情在线视频| 欧洲综合视频在线观看。欧洲,亚洲综合食品在线观看。 | 亚洲精品乱码久久久久久按摩观| 五月停停丁香| 9久久久久久久久久久| 午夜精品人妻无码一区二区三区| 婷婷激情四射五月天| 91碰碰碰| 第四色首页| 啪啪啪综合网| 偷偷操九九| 久久精品色| 99这里只有精品|v| 五月激情天| 丁香六月青青草| 精品一区二区三区四区五区六区介绍 | 天天爽综合网| 婷婷丁香十月| 婷婷丁香五月激情密臀av| 免费日韩99| A久久| 成人精品视频99在线观看免费 | 激情综合网五月婷婷| 超级碰碰碰久久网站视频| 婷婷五月天色| 看片视频在线免费日产在线看| 婷婷五月色| 日本WWW九九九| www·五月天| 91久久综合亚洲鲁鲁五月天| 天堂网操| 五月色无码| 啪啪 综合网| 超碰九热| 精品99久久久久成人网站免费| 五月花婷婷| 久久中文网| 久久久人妻人伦| 天天影院色| 五月天激情小说| 久久综合性| 综合色播| 精品九九九久| oumeisesewang| 99在线视频资源| 久久33视频| 婷婷色五月天第7色| 熟妇人妻中文字幕无码老熟妇| 婷婷丁香五月天综合激情| 亚洲性受XXXX五月丁香| 裸体做A爰片毛片A片免费| 色色综合网www| 久久色五月| 狠狠色97| 久久婷中文字幕| 久久99成人性爱高清视频| 天天干夜晚夜操| 99九九在线观看免费| 婷婷五月激情天| 婷婷情色开心五月天99| 国产1区2区3区在线观| 丁香婷婷综合激情五月色| 五月婷狠狠| 色色色在线观看| AV79| 免费观看的婷婷五月视频在线| 中文字幕乱码亚洲精品一区| 97干在线| 991国产精选视频在线播放下载| 国产探花一片区| 天堂婷婷丁香六月网| 天天做天天爱| 99久久久99久久91熟女| 婷婷五月天情色| 亚洲 欧洲 国产 伦综合| 亚洲第一视频 久久| 婷婷五月成人| 色婷婷欧美在线| 六月丁香啪啪| 九九黄色网| 91婷婷色五月| 九九精品综合| 91精品久久久久久久久| 99操免费视频| 色五月激情五月| 九九超碰人人| 综合噜噜| 在线99精品| 日日噜狠狠色综合久| 热久久这里只有三级视频| 五月天成人在线| 热思思九九| 亚洲看av的网站| 97色婷婷| 天天射天天射一道本日本社区 | 91成人电影| 天天干天天做| 91久久九久久九久久九久久九久久| 少妇激情五月天| 久久天堂色| 色五月色五天免费视频| 五月婷婷黄色毛片| 色五月播五月| 婷婷丁香五月91| 亚洲婷婷激情综合激情999精品| 久久久久久99精品无码| 综合99久久天天综合| 天天射天天干天插色综合| AV成人在线播放| 九色自拍| 五月婷婷AV| 成人深爱丁香五月| 五月天大香蕉| 五月婷色啪| 高清 码 免费看片短视频| 婷婷五月丁香综合激情| 久久久99日本大片| 免费黄色AV| 丁香五月婷婷色| 玖玖热视频| 二人电影免费版在线观看| 久久久国产精品黄毛片| 婷婷基地五月色| 十二区无码| 99这里都是精品6| 七七九色| 久碰视频| 五月天婷婷六月| www.丁香黄色五月天人与| 丁香六月婷婷综合啪啪| 五月婷婷六月丁香首页| 国产 亚洲 在线| 天堂婷婷五月在线| 逼特逼在线免费播放| 日夜夜久久| 欧美天天搞| 丁香九月久久| 天天干狠狠操| 久久天堂女人| 婷婷激情人妻| 美妞av| 色综合久久久无码中文字幕999| 五月天婷婷视频30| 色爱99| 热九九精品| 天天 日综合| 超碰妻人人| 少妇人妻人伦A片| 欧美日韩一a.无| 久久久久久久久久久久久9| http://www.sd-xiangsu.com/| 99综合熟女| 婷婷综合激情| 色婷婷五月天堂资源| 婷婷五月综合色中文字幕| 色播六月| 99爱免费在线视频| 国产综合婷婷| 色婷婷成人做爰A片免费看网站| 我要看激情五月天| 久久精品五月天| 成人国产欧美大片一区| 天天日日夜夜爽。| 成人AV免费观看| 日本色色色色色色色色一色二色| 九九这里有精品| 五月天激情黄色小说在线观看| 五月天激情网站| 丁香五月天社区| 丁香六月色婷婷欧美| 激情婷婷五月在线合集| 噜噜干日本| 久热这里只有精品66| 日本婷婷在线| 色噜噜狠狠色综合日日| 五月天激情小说网| 日日噜噜久久婷婷五月天 | 五月婷婷九| 香蕉操亚洲| 99国产精品久久久久久久久久久| 欧美五月婷婷| 丁香 婷婷五月| 一区三区视频有限公司| 99精品免费| 26UUU欧美| 亚洲激情图文小说| www.玖玖婷婷在线| 婷香五月激情视频| 五月天 无码| 26UUU成人网| 婷婷五月综合色中文字幕| 精品久久人妻| 五月花婷婷| 夜夜操少妇| 亚洲熟女色| WWW.亚洲无码| 欧美色婷婷| 婷婷亚洲欧美丁香五月| 亚洲综合视频天天精品| 欧美色偷拍| 五月综合色| av在线观看网站| 亚洲 五月 婷婷 成人| 99色色爰| 第五婷婷伊人丁香| 激情文学综合婷婷五月天丁香花| 伊人www22综合色| 亚洲最大五月天成人网| 精品久久婷婷五月天| www.91在线看| 色五月婷婷7777| 婷婷丁香色五月| 五月天开心婷婷激情网站| 亚洲婷婷丁香五月天激情小说 | 狠狠草在线观看| 亭亭五月丁香五月天激情| 深爱五月天婷综合| 97碰在线| 丁香五月大香蕉AV| 亚洲日韩久久婷婷伊人| 99思思| 天天爽天天爽| 日日夜夜小色哥| 香蕉婷婷色五月| 九九这里是免费的视频5| 超碰免费人人肏| 黄桃AV无码免费一区二区三区| 色噜噜97视频在线观看| 色五月婷婷色五月| wwccc久久久| 五月婷婷激情综合在线| 丁香婷婷五月综合影院| 91久久人人操| 色色欧美色色色| 亚洲视频99| 午夜九九九九九九九九九九九九九| 色综合天天天天做夜夜| 婷婷五六日| 丁香五月婷婷久久综合激情网| 青青草婷婷久久| 91干婷婷| 欧美一级色| 99这里| 99精品一二三四视频| 婷婷五月天开心网| 久久久久久丁香五月| 婷婷综合五月天激情| 超碰av在线| 91久久精品无码一区二区三区| 成人免费网站免费看| 色99综合色88| 99热精品在线| 搡BBBB搡BBB搡五十| 97啪啪| 中文色婷婷| 激情综合五月天| 日韩三级高清无码| se99视频| 天天爽天天草| 婷婷五月天首页| 九九久久99| 天天日人人| 丁香五月天色| 久久丁香婷婷五月天| 久久五月视频| 91九色精品女同系列| 99色视频在线观看最新| 国产成人AV在线播放| 中文字幕五月久久婷婷| www.久久色.com| 无语停婷丁香网| 久久成人亚洲欧美电影| 国内精品99| 狠狠操狠狠色| 狠狠五月婷婷| 五月综合人妻| 99色综合久久| 丁香五月激情综合久久| 日日夜夜九九| 玖玖婷婷五月天毛片| 色九四色| 91久久国产自产拍夜夜91久久精品文字>91麻豆精品国产 | 97干综合网| 久久激情五月网| 丁香婷婷综合激情五月色| 青青草Avb在线| 丁香六月激情毛片| 日韩一级网站| 亚洲色激情| 大香蕉五月天婷婷丁香91| 日本一级特黄大片AAAAA级| 婷婷综合视频| 国产 亚洲 在线| 综合激情五月丁香| 在线国产精品色| 亚洲第一色网站| 婷久看人爽| 乱抡小BB| 婷婷五月精品中文字幕| 色欲AV导航| 色色色图| 大地资源中文在线观看免费版高清| 怡春院| 婷婷久久丁香五月| 九九综合久久| 白人荫道BBWBBB大荫道| 欧美色五月| 狠狠色噜噜狠狠狠777奇米| 婷婷五月天性爱视频| 操逼巨乳91| 亚洲视频五区| 久久这里只有国产| 成人色五月天| 婷婷五月丁香综合人妻| 激情婷婷五月| 超级碰碰91| 亚洲色视频| 超碰免费在线| 99re视频在线精品| 国产免费av在线| 五月婷婷黄色| 婷婷五月激情六月丁香 | 狠狠色丁香久久综合婷婷亚洲成人福利| 在线sebiav精品视频| www.婷婷,com| 深爱婷婷基地| 五月婷久久草| 色狠狠综合| 爱射综合| 99这里只有精品| 久久AAAA片一区二区| 亚洲av综合网| 夜夜夜天天操| 亚洲综合干| 深爱激情五月婷婷| 九九热re99re6在线精品| 久久538| 天天久综合网永久入口18| 超碰在线个人观看| 97热精品| 99热日韩这里只有精品| 我要看激情五月天| 婷婷四房播播| 天天操人人干| 97超级碰| 精品在线网站| 日韩一区二区三区无码| 五月丁香六月婷婷亚洲综合| 色玖玖导航| 中文字幕网伦射乱中文| 亚洲色频| 久久9精品| 久久午夜理论| 丁香六月婷婷| 婷婷五月影院| 98热精品| 婷婷久久五月天| 狠狠狠狠狠草| 91成人电影| 99啪啪| 99综合熟女| 综合激情五月丁香9999久久精| 九九色热视频| 欧美婷婷丁香五月社区| 一级AV片| 九九综合色综合| 亚洲色婷婷网站| 丁香五月天电影| 99热只有| 午夜日韩久久久网站| 久热这里只有精品性色AV| 九九无码视屏| 玖玖婷婷五月天| 日本韩国视频在线观看社区免费的9| 激情久久久久久久久久| 六月伊人婷婷| 色开心| 狠狠干综合| 91人人操人人爱| 激情久久天天| 五月丁香六月激情综合| 婷婷丁香激情五月天色色色| 亚洲婷婷91丁香| 五月天激情无码高清| 任你爽精品免费视频6| 97爱艹婷婷开心丁香激情综合| 久热AA| 9999色色色色| 天天摸天天肏| 97se在线视频| 六月婷婷网| 丁香六月婷婷五月婷婷| 少妇熟女视频一区二区三区| 日本WWW九九九| 九九热区一区二区三区| 亚洲第一成人无码A片| www,setingting| wWwCom夜操wwW| 丁香五月六月综合激情| 亚洲乱码日产精品BD| 色综合中文| 色综合综合网| 看片视频在线免费日产在线看| 色婷婷四色| 青青草六月丁香| 99色婷婷视频| 操操日韩| 婷婷丁香五月天小说| 在线播放成人网站| 亚洲AV另类| 激情狠狠丁香月| 另类小说五月天| 午夜丁香综合婷婷| 丁香六月激情蜜桃| 五月丁香六月色| 五月天三级久久| 亚洲国产va| 欧美日本韩国亚洲| 五月婷婷熟女| 青青草成人网| 综合色在线| 激情网五夜婷婷| 99超级碰碰| 久久久色情| 五月婷婷综合色拍| 99这里都是精品6| 热99精品视频| 五月婷婷在线播放| 大色鬼综合| 婷婷五月激情六月丁香| 激情五月天综合网| 九九综合图片网| 欧美日本一区二区三区| 国产JK精品白丝AV在线观看| 色五月天激情| 天天综合色| 丁香五月天日韩无码| 丁香五月激情六月综合| 五月天成人综合| 综合色情网| 亚洲色无码A片中文字幕| 玖玖玖婷婷婷| 婷婷五月天首页| 国产毛片精品一区二区色欲黄A片 欧美日本免费一道免费视频 | 色综合色婷婷色伊人| 婷婷五月综合网| 天天综合91入口| 五月天伊人综合| 99热午夜精品| 色五月婷婷激情五月| 99热在线观看| 99久久精| 大香网伊人久久综合| 99热免费精品| 99色 | 狠狠色狠狠操| 大香蕉手机视频| 久久伦乱| 99在线公开视频| 夜夜爽天天爽| 另类丁香综合| 九九热思思| www.久久久久久久久久.com| 99视频精品全部免费观看| 大香蕉综合网| 婷婷五月天伦理| 99ER热精品视频| 色日本丁香婷婷| 色综合天天综合成人网| 欧美天天草人人草| 九色视频91| 99热大香蕉| 97色永久免费视频| 成人网站免费在线播放| 啪色综合| 久99综合婷婷| 久热 91| 久久婷综合| 九月激情网| 另类图片天天影视在线观看| 成人国产综合| 超碰成人免费| 色五月综合网| 99在线精品视频免费| 婷婷狠狠操| 婷婷激情五月天天天开心| 思思热在线观看| 久久五月天综合视频网站| 中文字幕 中文字幕明步 | 我淫我色婷婷五月天激情四射| 26uuu国产精品| 色婷婷六月| 99热这里只有精品 搜| 五月久久丁香| 涩五月色婷婷| 久久aaaaa| 97色色网| 日本色天堂| 亚洲综合99| 色婷婷色五月另类综合| 99精品视频在线观看| 五月激激网w'w'w| 最新无毒无码AV| 色播婷婷五月天| 久操大屁股女人av| 免费精品99| 性爱网五月天| 天天色综网| 色婷婷六月激情| 五月婷婷香蕉视频| 79精品视频| AAA久久久AAA久久久AAA| www久久艹| 99爱视频精品在线观看| 黄桃AV无码免费一区二区三区| 午夜爱爱爱成人| 久久九九思思| 五月天婷婷视频小说| 欧美大香蕉视频| 99色婷婷视频| 婷婷五月天无码视频| 日本操B视频| 99在线精品免费视频| 亚洲色夜| 亚洲激情综合| renrencaoav| 天堂网亚洲色图| 久久99精品久久久久久三级| 婷婷久久五月| 国产69久久久欧美黑人A片| 五月综合六月婷婷| 97五月天婷婷综合激情网| www,色婷婷| 丁香五月婷婷综合视频| 五月激情丁香啪啪| 99视频精品在线| 色五月综合激情| 国产精品久久久久久妇女6080 | 大学生高潮无套内谢视频| 五月天五月婷五月激情网| 91热手机在线| 久久婷婷色| 日韩AAA| 五月天色色色色色| 亚洲无码播放| 超碰精品手机在线| 久久九九re热| 亚洲激情在线| 久久机热这里只有 | 性高潮久久久久久-九九九九九九九九九九热-成人AV | 午夜婷婷久久| 综合激情啪啪| 综合网精品99| 在线观看亚洲视频影院| 亚洲avjiujiur91| 香蕉五月婷婷| 久久婷五月婷| 99精品在线下载| 色情五月天。| 国产人妻777人伦精品HD| www色婷婷com| 丁香五月性| 操日本99| 9l视频自拍9l九色9l成人| 激情五月综合色婷婷| 色色色9 9 9| 99无码精品| www.日日夜夜.com| 欧美婷婷六月丁香综合色| 99A片| www.99久| av在线色五月丁香婷区久| 99精品久久久久| 丁香五月天激情| 久久人妻精品| 亚洲色婷婷网站| 日亚二欧美| 国产日产亚系列精品版优势| 婷婷狠狠操| 夜夜爽天天| 91色碰| 日本不卡高字幕在线2019| 婷婷五月天播播| 精品无码色| 日韩肏屄网| 欧美精品XXXXBBBB| 深夜视频| 丁香五月宝贝激情网| 五月天激情四射网站| 97色色网| 狠狠色噜噜狠狠狠狠综合| 欧美97p| 综合色99| 久久玖玖99| www.夜夜操.com| 亚洲va国产va天堂va综合va| 开心四月婷婷在线色播播| 996精品热视频| ..真实国产乱子伦毛片| 久婷| 直接看的AV| 色亚洲婷婷| 97久久草草超级碰碰碰| 久久婷婷一级片| 久久国产色| 久久色亭亭五月天| 日日噜狠狠色综合久久| 色情婷婷| 99热第一页| 久99婷婷色综合| 99热在线观看精品| 日本色五月婷婷| 丁香婷婷久久老熟女综合网| 丁香六月综合激情| 四射综合网| 欧美五月停| 五月天婷婷色| 深夜视频| 美女美女美女三级色天天天天天| 六月婷婷深深爱| 国产avapp 网| 超碰在线个人观看| 屁股翘好撅高迎合跪趴| 日本久久婷| 婷婷五月天国产在线播放| 天天成人综合视频| 欧美激情五月综合| 99大香蕉| 超碰伊人碰婷婷五月| Av狠狠色丁香婷| 五月天精品| www.婷婷亚洲基地| 五月丁香六月婷婷啪啪| 激情开心五月亚洲| 99热久久这里只有精品| 91无码视频| 亚洲九九婷婷| 亚洲一二三网| 天天色情站| 亚洲99热| 伊人久久大香线蕉av一区| 激情五月婷婷网| 五月婷婷色吧!| 凹凸探花电影| 色婷婷av在线观看| 九九99热| 麻豆精品| 4399在线观看免费高清毛片| 婷婷99狠狠躁天天久久久九九九| 五月天国产| 激情综合色网| 亚洲精品视频电影| 五月天网站免费欧美| 99日韩网站| 小视频一区| 清色五月天| 九九综合久久丁香婷婷,开心激情综合网| 日本久热| 极品色丁香| 五月天婷婷情色| 最新AV在线观看| 月丁香久久久| 狠狠婷婷日韩| 琪琪色五月婷婷老师| 久色网| 久久久GOGO无码啪啪艺术| 久久狠狠干| 亚洲高清在线| 久色网址| 日本熟妇精品99| 人妻AV在线观看| 精品影院| 97色婷婷| 免费一对一真人视频| 亚洲综合五月天| 99热地址| 亚洲视频色婷婷| 99精品在这里| 色爱五月天| 激情五月天小说| 99国产视频网| 欧州色色| 99久在线精品99re8热| 天天爽天天爽视频| 夜夜干夜夜操| 中文字幕 中文字幕明步| 少妇激情五月天| 丁香婷婷色五月激情综合| 操骚货在线| 日本美女五月天| 嫩BBB搡BBB搡BBB四川|