欧美日韩国产ⅴa另类-91精品无码国产在线观看一区欧美日一区二区三区久久国产精品视频-欧美三级大片在

2024

2024

  • Record 1 of

    Title:Rapid and non-destructive identification of plastic particles through THz technology and machine learning
    Author Full Names:Zhang, Min(1); Peng, Zhongze(1); Xu, Xiaoguang(3); Xie, Xinru(1); Liu, Yong(1); Song, Qi(2)
    Source Title:Infrared Physics and Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:For fast and accurate non-destructive differentiation of plastic pellets with similar appearance during import and export inspections, as well as for quality control purposes. Terahertz technology offers a non-destructive analysis approach for samples from diverse fields. By integrating deep learning algorithms with terahertz time-domain spectroscopy (THz-TDS) and linear discriminant analysis (LDA), it is possible to establish a highly accurate terahertz spectroscopy qualitative identification model. Additionally, the incorporation of principal component analysis (PCA) enables the application of this model to higher dimensional data. Notable differences in absorption coefficient, phase difference, and refractive index are observed among different plastic particles. The implementation of this rapid, accurate, and non-destructive detection method can greatly facilitate the testing and identification of plastic particles in customs and quality inspection departments. ? 2024 Elsevier B.V.
    Affiliations:(1) Key Laboratory of Optoelectronic Devices and Systems of Ministry of Education and Guangdong Province, College of Physics and Optoelectronic Engineering, The State Key Laboratory of Transient Optics and Photonics, Shenzhen University, Shenzhen & Xi'an, China; (2) Shandong Key Laboratory of Optical Communication Science and Technology, School of Physics Science and Information Technology, Liaocheng University, Liaocheng, China; (3) Shenzhen Academy of Inspection and Quarantine, Shenzhen, China
    Publication Year:2024
    Volume:140
    Article Number:105350
    DOI Link:10.1016/j.infrared.2024.105350
    數(shù)據(jù)庫ID(收錄號(hào)):20242116115747
  • Record 2 of

    Title:Highly sensitive Ga2O3 MSM solar-blind UV photodetector with impact ionization gain
    Author Full Names:Wan, Qiyi(1,2); Zhang, Anzhen(1,2); Cao, Weiwei(1,3); Bai, Yonglin(1,2); Wang, Bo(1,2); Cheng, Hang(1,2); Wang, Gang(1,2)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:In this study, a (400) crystal-oriented β-Ga2O3 thin film with a thickness of approximately 400 nm was grown on a c-plane sapphire substrate using atomic layer deposition. Schottky contact-type metal-semiconductor-metal solar-blind ultraviolet detectors with an Au/Ni/Ga2O3/Ni/Au structure were fabricated on the epitaxial thin films. The Schottky barrier height is about 1.1 eV. The device exhibited a high responsivity of up to 800 A/W, and a detectivity of 6 × 1014 Jones while maintaining a relatively fast response speed with a rise time of 4 ms and a fall time of 12 ms. The photo-to-dark current ratio was greater than 103, and the external quantum efficiency exceeded 103, indicating a significant gain in the device. Through the analysis of TCAD simulation and experimental results, it is determined that the impact ionization at the edge of the MSM electrode and channel contact is the main source of gain. Barrier tunneling effects and the photoconductive effect due to different carrier mobilities were not the primary reasons for the gain. ? 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
    Affiliations:(1) Key Laboratory for Space Science Low Light Level Detection Technology, Xi’an Institute of Optics and Precision Mechanics (XIOPM), Chinese Academy of Sciences (CAS), Shaanxi, Xi’an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Key Laboratory for Physical Electronics and Devices, the Ministry of Education, Shaanxi Key Lab of Information Photonic Technique, Xi’an Jiaotong University, Xi’an; 710049, China
    Publication Year:2024
    Volume:32
    Issue:18
    Start Page:32322-32335
    DOI Link:10.1364/OE.531784
    數(shù)據(jù)庫ID(收錄號(hào)):20243616997102
  • Record 3 of

    Title:Goji Disease and Pest Monitoring Model Based on Unmanned Aerial Vehicle Hyperspectral Images
    Author Full Names:Zhao, Ruixin(1,2,3); Zhang, Biyun(4); Zhang, Chunmin(1,2,3); Chen, Zeyu(1,2,3,5); Chang, Ning(1,2,3,5); Zhou, Baoyu(6); Ke, Ke(1,2,3); Tang, Feng(1,2,3)
    Source Title:Sensors
    Language:English
    Document Type:Journal article (JA)
    Abstract:Combining near-earth remote sensing spectral imaging technology with unmanned aerial vehicle (UAV) remote sensing sensing technology, we measured the Ningqi No. 10 goji variety under conditions of health, infestation by psyllids, and infestation by gall mites in Shizuishan City, Ningxia Hui Autonomous Region. The results indicate that the red and near-infrared spectral bands are particularly sensitive for detecting pest and disease conditions in goji. Using UAV-measured data, a remote sensing monitoring model for goji pest and disease was developed and validated using near-earth remote sensing hyperspectral data. A fully connected neural network achieved an accuracy of over 96.82% in classifying gall mite infestations, thereby enhancing the precision of pest and disease monitoring in goji. This demonstrates the reliability of UAV remote sensing. The pest and disease remote sensing monitoring model was used to visually present predictive results on hyperspectral images of goji, achieving data visualization. ? 2024 by the authors.
    Affiliations:(1) School of Physics, Xi’an Jiaotong University, Xi’an; 710049, China; (2) The Institute of Space Optics, Xi’an Jiaotong University, Xi’an; 710049, China; (3) Key Laboratory for Nonequilibrium Synthesis and Modulation of Condensed Matter, Xi’an Jiaotong University, Ministry of Education, Xi’an; 710049, China; (4) BA Trading (Guangzhou) Co., Ltd., Guangzhou; 510000, China; (5) Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (6) Ningxia Bing He Technology Co., Ltd., Shizuishan; 753099, China
    Publication Year:2024
    Volume:24
    Issue:20
    Article Number:6739
    DOI Link:10.3390/s24206739
    數(shù)據(jù)庫ID(收錄號(hào)):20244417291225
  • Record 4 of

    Title:High repetition frequency tunability active Q-switched all-fiber laser by multi-gain sub-rings smoothing multipeak pulse and suppressing ASE self-saturation
    Author Full Names:Chen, Xuechun(1,2,3,4); Wang, Nan(1,2,3,4); He, Chaojian(2,3); Xu, Shuang(2,3,4); Ning, Chaoyu(2,3,4); Li, Xinyao(2,3,4); Dong, Zhiyong(2,3); Yang, Yingying(2,3); Yang, Guowen(1); Lin, Xuechun(2,3,4)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:This paper provides a method to effectively suppress the severe ASE self-saturation when achieving high repetition frequency tunability with high output power and narrow pulse width in active Q-switched all-fiber lasers. By studying the regularity of the system’s multi-stable state, we first ensured that the laser system operated in a steady state. Then output avoids uneven distribution of pulse energy or missing pulses due to period bifurcation state or chaos state. By adding multiple gain sub-rings within the cavity, the sub-ring structure itself indirectly mitigates the ASE self-saturation while smoothing the pulse. The method will avoid the severe power loss caused by traditional smoothing methods by adjusting the AOM rising edge time. It will also avoid lowering the ASE lasing threshold at high repetition frequency. Meanwhile, the intra-cavity backward ASE can be effectively absorbed by inserting the gain fiber in the sub-rings to directly mitigate the ASE self-saturation. The system’s continuously adjustable repetition frequency can be as high as over 300 kHz. It ensures that output power above the watt level and a ? 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
    Affiliations:(1) State Key Laboratory of Transient Optics and Photonics, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (2) Laboratory of All-Solid-State Light Sources, Institute of Semiconductors, Chinese Academy of Sciences, Beijing; 100083, China; (3) Engineering Technology Research Center of All-Solid-State Lasers Advanced Manufacturing, Beijing; 100083, China; (4) College of Materials Science and Opto-Electronic Technology, University of Chinese Academy of Sciences, Beijing; 101407, China
    Publication Year:2024
    Volume:32
    Issue:2
    Start Page:2124-2131
    DOI Link:10.1364/OE.515391
    數(shù)據(jù)庫ID(收錄號(hào)):20240415421892
  • Record 5 of

    Title:Review of the baffle technology application
    Author Full Names:Wenlong, He(1,2); Shangmin, Lin(1,2,3); Yunqiang, Lai(1,2); Dandan, Ma(1,4); Jiangtao, Wang(1,2); Zhen, Wang(1); Xuan, Zhang(1,4); Yu, Jin(1,2)
    Source Title:Proceedings of SPIE - The International Society for Optical Engineering
    Language:English
    Document Type:Conference article (CA)
    Conference Title:2024 Applied Optics and Photonics China: Optical Design and Manufacturing, AOPC 2024
    Conference Date:July 23, 2024 - July 26, 2024
    Conference Location:Beijing, China
    Conference Sponsor:Chinese Society for Optical Engineering (CSOE)
    Abstract:With the rapid development of space optical technology, the demand for the sensitivity of the optical system has increased, and the corresponding requirements for the suppression ability of stray light has become more critical. As an important part of the optical system to suppress stray light, the suppression effect of the baffle affects the final imaging quality of the entire optical system, and is currently developing in the direction of diversification, high efficiency, and light miniaturization. This paper elaborates the principles and application scenarios of various structural types of baffle, and analyses their applicability and limitations. According to the characteristics of various lens shield structures, they are divided into classical structure, reflective type, deployable type, honeycomb type and venetian blind type, and the characteristics and application fields of various structural forms of baffle are introduced. The research progress of light shields in recent years was introduced from the aspects of structural characteristics, suppression capacity, and application scenarios, and the advantages and disadvantages of various structures and the direction of improvement were discussed. Finally, the development direction of different structural forms of light shields is prospected. ? 2024 SPIE.
    Affiliations:(1) Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an, China; (2) University of Chinese Academy of Sciences, School of Optoelectronics), Beijing, China; (3) Xi’an Space Sensor Optical Technology Engineering Research Center, Xi'an, China; (4) Xi’an Technological University, School of Opto-electronical Engineering), Xi'an, China
    Publication Year:2024
    Volume:13497
    Article Number:134970I
    DOI Link:10.1117/12.3048218
    數(shù)據(jù)庫ID(收錄號(hào)):20250117640641
  • Record 6 of

    Title:Hierarchical existential prior based on expanded pseudo-label for crack detection
    Author Full Names:Wang, Nan(1); Fang, Jie(2); Yin, Jianfu(3); Cao, Xiaoqian(4)
    Source Title:Review of Scientific Instruments
    Language:English
    Document Type:Journal article (JA)
    Abstract:Road crack detection approaches based on the image processing technique have attracted much attention during the past decade due to their convenience and efficiency, but most of them cannot achieve the expected performances due to the complex background interference and severe category imbalance of road images. This paper presents a hierarchical existential prior based on an expanded pseudo-label for crack detection. In particular, the framework contains three variants of U-Net, and each sub-network is trained by pseudo-labels generated by transforming semantic categories of non-crack pixels distributed in the neighborhoods of crack ones. Notably, the expansion degrees of labels for three sub-networks are set in hierarchical descending order. In other words, the crack samples of pseudo-labels for the latter sub-network are a subset of pseudo-labels for the former one, and we define it as an existential prior, which can optimize the network in a coarse-to-fine fashion and refine the detection result gradually. In addition, we utilize a hybrid loss consisting of IoU, SSIM, and focal loss to optimize the network in different aspects, including image-aspect, patch-aspect, and pixel aspect in the training phase, which can improve the structural representation capability of the model. In addition, we present a dynamic hyper-parameter adjustment strategy to balance the weight coefficients of different loss terms, which can enhance the robustness of the model for various practical scenes. Finally, the proposed method achieves 11.36%, 29.76%, and 26.73% in terms of Fβ on CrackTree200, Crack Forest, and ALE datasets, respectively, which sufficiently demonstrate its effectiveness and superiority. ? 2024 Author(s).
    Affiliations:(1) School of Information Science and Technology, Hainan Normal University, Haikou; 571158, China; (2) School of Telecommunication and Information Engineering, Xi’an University of Posts and Telecommunications, Shaanxi, Xi’an; 710121, China; (3) Key Laboratory of Spectral Imaging Technology, Chinese Academy of Sciences, Xi’an Institute of Optics and Precision Mechanics, Shaanxi, Xi’an; 710119, China; (4) School of Electrical and Control Engineering, Shaanxi University of Science and Technology, Shaanxi, Xi’an; 710021, China
    Publication Year:2024
    Volume:95
    Issue:12
    Article Number:123706
    DOI Link:10.1063/5.0217515
    數(shù)據(jù)庫ID(收錄號(hào)):20250117619529
  • Record 7 of

    Title:Near-field characterization and failure analysis of broad-area laser diode with optical feedback
    Author Full Names:Miao, Xinlian(1,2,3); Xu, Zibang(1,2,3); Tang, Song(4); Liu, Yuxian(5); Yang, Guowen(4); Yuan, Xiao(1,2,3)
    Source Title:Proceedings of SPIE - The International Society for Optical Engineering
    Language:English
    Document Type:Conference article (CA)
    Conference Title:3rd International Conference on Optics and Machine Vision, ICOMV 2024
    Conference Date:January 19, 2024 - January 21, 2024
    Conference Location:Nanchang, China
    Abstract:Optical feedback may cause accelerated degradation as well as catastrophic optical damage in high-power Laser diodes, directly limiting their output optical power and lifetime. Near-field distribution change caused by optical feedback has high relevance with the reliability and is worthy to be studied. In this study, the influence of optical feedback on the near-field distribution of the laser diode is investigated, as well as the influence on the device failure. A feedback light testing system is successfully established, which integrates power monitoring, spectral measurement, and near-field assessment. Through an investigation into the influence of feedback light, it was observed that it induces instability in the near-field distribution, leading to temporal variations. Under conditions of strong feedback, a stable near-field peak emerged. At even higher current levels, a clear correspondence was identified between the near-field peak and the point of failure. These findings offer valuable insights for the understanding of the influence of optical feedback on the near-field distribution of the laser diode and its reliability. ? 2024 SPIE.
    Affiliations:(1) College of Physics, Optoelectronics and Energy, Soochow University, Jiangsu, Suzhou; 215006, China; (2) Key Lab of Advanced Optical Manufacturing Technologies of Jiangsu Province, Jiangsu, Suzhou; 215006, China; (3) Key Lab of Modern Optical Technologies of Education Ministry of China, Jiangsu, Suzhou; 215006, China; (4) Dogain Laser Technology (Suzhou) Co., Ltd., Suzhou; 215123, China; (5) 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:13179
    Article Number:1317903
    DOI Link:10.1117/12.3031600
    數(shù)據(jù)庫ID(收錄號(hào)):20243216830273
  • Record 8 of

    Title:Correlated photon pairs generation with 3D integrated SiN circuit
    Author Full Names:Zhu, Xiaotian(1); Wang, Changyue(2); Little, Brent E.(3); Ou, Z.Y.(1); Chu, Sai T.(1); Liang, Cui(2); Li, Xiaoying(2)
    Source Title:CLEO: Science and Innovations, CLEO: S and I 2024 in Proceedings CLEO 2024, Part of Conference on Lasers and Electro-Optics
    Language:English
    Document Type:Conference article (CA)
    Conference Title:CLEO: Science and Innovations in CLEO 2024, CLEO: S and I 2024 - Part of Conference on Lasers and Electro-Optics
    Conference Date:May 5, 2024 - May 10, 2024
    Conference Location:Charlotte, NC, United states
    Abstract:For the photon pairs generated from SiN waveguide, the measured heralding efficiency is 18%, coincidence-to-accidental ratio is up to 149, and photon-pair rate is up to 0.6 MHz under the pump power of 2.9 mW. ? Optica Publishing Group 2024
    Affiliations:(1) Department of Physics, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong; (2) College of Precision Instrument and Opto-Electronics Engineering, Key Laboratory of Opto-Electronics Information Technology, Ministry of Education, Tianjin University, Tianjin; 300072, China; (3) QXP Technology Inc., Xi'an, China
    Publication Year:2024
    數(shù)據(jù)庫ID(收錄號(hào)):20244017131737
  • Record 9 of

    Title:The role of eye movement signals in non-invasive brain-computer interface typing system
    Author Full Names:Liu, Xi(1,2,3); Hu, Bingliang(1,3); Si, Yang(4,5); Wang, Quan(1,3)
    Source Title:Medical and Biological Engineering and Computing
    Language:English
    Document Type:Journal article (JA)
    Abstract:Brain-Computer Interfaces (BCIs) have shown great potential in providing communication and control for individuals with severe motor disabilities. However, traditional BCIs that rely on electroencephalography (EEG) signals suffer from low information transfer rates and high variability across users. Recently, eye movement signals have emerged as a promising alternative due to their high accuracy and robustness. Eye movement signals are the electrical or mechanical signals generated by the movements and behaviors of the eyes, serving to denote the diverse forms of eye movements, such as fixations, smooth pursuit, and other oculomotor activities like blinking. This article presents a review of recent studies on the development of BCI typing systems that incorporate eye movement signals. We first discuss the basic principles of BCI and the recent advancements in text entry. Then, we provide a comprehensive summary of the latest advancements in BCI typing systems that leverage eye movement signals. This includes an in-depth analysis of hybrid BCIs that are built upon the integration of electrooculography (EOG) and eye tracking technology, aiming to enhance the performance and functionality of the system. Moreover, we highlight the advantages and limitations of different approaches, as well as potential future directions. Overall, eye movement signals hold great potential for enhancing the usability and accessibility of BCI typing systems, and further research in this area could lead to more effective communication and control for individuals with motor disabilities. Graphical Abstract: This article delves into three pivotal components of the BCI typing system: data, algorithms, and interaction. The system leverages eye movement and EEG data as inputs, which are processed through algorithms for data fusion, feature extraction, and classification to yield output results. Furthermore, it facilitates real-time interaction by providing visual feedback via an efficient user interface. (Figure presented.) ? International Federation for Medical and Biological Engineering 2024.
    Affiliations:(1) Key Laboratory of Spectral Imaging Technology, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Key Laboratory of Biomedical Spectroscopy of Xi’an, Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China; (4) Department of Neurology, Sichuan Academy of Medical Science and Sichuan Provincial People’s Hospital, Chengdu; 611731, China; (5) University of Electronic Science and Technology of China, Chengdu; 611731, China
    Publication Year:2024
    Volume:62
    Issue:7
    Start Page:1981-1990
    DOI Link:10.1007/s11517-024-03070-7
    數(shù)據(jù)庫ID(收錄號(hào)):20241215789908
  • Record 10 of

    Title:Spatiotemporal vectorial structured light that dynamically varies on higher-order Poincaré sphere
    Author Full Names:Liang, Yize(1,2,3,4); Xi, Teli(1,2); Cao, Shuai(1,2); Liu, Lixian(1,2); Liu, Fei(1,2); Wan, Zhenyu(3,4); Wang, Jian(3,4); Shao, Xiaopeng(5)
    Source Title:Optics Express
    Language:English
    Document Type:Journal article (JA)
    Abstract:Higher-order structured light beams, including optical vortex (OV) beams and vector beams, which can be geometrically represented as points on higher-order Poincaré spheres (HOPSs), have been widely exploited in applications such as optical trapping, optical communications, optical metrology, quantum optics, to name a few. To date, traditional approaches to producing such higher-order structured light beams deal with controllable generation of different static points on HOPS. In this paper, we propose and demonstrate the generation of spatiotemporal structured light beams that dynamically vary on HOPS. By superposing OV beams with different frequencies, spatiotemporal vectorial structured light beams that dynamically vary along latitude lines, meridians, and other trajectories on the first order Poincaré sphere are generated in simulation. Our work may give new insight into arbitrarily and ultrafast tailoring higher-order structured light beams. ? 2024 Optica Publishing Group under the terms of the Optica Open Access Publishing Agreement.
    Affiliations:(1) Xi’an Key Laboratory of Computational Imaging, School of Optoelectronic Engineering, Xidian University, Xi’an; 710071, China; (2) Advanced Optoelectronic Imaging and Device Laboratory, Hangzhou Institute of Technology, Xidian University, Hangzhou; 311200, China; (3) Wuhan National Laboratory for Optoelectronics, School of Optical and Electronic Information, Huazhong University of Science and Technology, Hubei, Wuhan; 430074, China; (4) Optics Valley Laboratory, Hubei, Wuhan; 430074, China; (5) Xi’an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi’an; 710119, China
    Publication Year:2024
    Volume:32
    Issue:16
    Start Page:28413-28428
    DOI Link:10.1364/OE.525629
    數(shù)據(jù)庫ID(收錄號(hào)):20243216825749
  • Record 11 of

    Title:Correlated photon pairs generation with 3D integrated SiN circuit
    Author Full Names:Zhu, Xiaotian(1); Wang, Changyue(2); Little, Brent E.(3); Ou, Z.Y.(1); Chu, Sai T.(1); Liang, Cui(2); Li, Xiaoying(2)
    Source Title:2024 Conference on Lasers and Electro-Optics, CLEO 2024
    Language:English
    Document Type:Conference article (CA)
    Conference Title:2024 Conference on Lasers and Electro-Optics, CLEO 2024
    Conference Date:May 7, 2024 - May 10, 2024
    Conference Location:Charlotte, NC, United states
    Conference Sponsor:American Elements; American Physical Society, Division of Laser Science; et al.; IEEE Photonics Society; IPG Photonics; LIGENTEC
    Abstract:For the photon pairs generated from SiN waveguide, the measured heralding efficiency is 18%, coincidence-to-accidental ratio is up to 149, and photon-pair rate is up to 0.6 MHz under the pump power of 2.9 mW. ? Optica Publishing Group 2024 ? 2024 The Author(s)
    Affiliations:(1) Department of Physics, City University of Hong Kong, 83 Tat Chee Avenue, Kowloon, Hong Kong; (2) College of Precision Instrument and Opto-Electronics Engineering, Key Laboratory of Opto-Electronics Information Technology, Ministry of Education, Tianjin University, Tianjin; 300072, China; (3) QXP Technology Inc., Xi'an, China
    Publication Year:2024
    DOI Link:10.1364/cleo_at.2024.jw2a.165
    數(shù)據(jù)庫ID(收錄號(hào)):20244917467969
  • Record 12 of

    Title:Metasurfaces-Empowered Optical Micromanipulation (Invited)
    Author Full Names:Xu, Xiaohao(1,2); Gao, Wenyu(1,2); Li, Tianyue(3,4); Shao, Tianhua(3,4); Li, Xingyi(5); Zhou, Yuan(1,2); Gao, Geze(3,4); Wang, Guoxi(1,2); Yan, Shaohui(1,2); Wang, Shuming(3,4); Yao, Baoli(1,2)
    Source Title:Guangxue Xuebao/Acta Optica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:Significance Optical micromanipulation utilizes optical force to dynamically control particles, which has the characteristics of non-contact and can be operated in a vacuum environment. Since the invention of optical tweezers in the 1980s, the field has experienced rapid development and has given rise to many emerging research directions, such as holographic optical tweezers, near-field evanescent wave optical tweezers, fiber optic tweezers, optoelectronic tweezers, and photo-induced temperature field optical tweezers, providing rich and powerful tools for fields such as biology, chemistry, nanoscience, and quantum technology. These methods can not only capture, separate, and transport small objects but also allow more precise manipulation, such as the rotation of small objects. However, traditional manipulation methods rely on tightly focused local light, greatly limiting the action range of optical force. In addition, in order to generate a structured light field, larger optical components such as spatial light modulators are usually required, making it difficult to miniaturize and integrate the optical manipulation system. In recent years, metasurfaces have emerged as integrated devices composed of subwavelength nanoantennas, promising new opportunities for optical micromanipulation. This ultra-thin artificial microstructure device can flexiblely control multiple degrees of freedom such as amplitude, phase, and polarization of light, by specially designing the geometric shape, size, and material of its own micro/nanostructure. Compared with traditional optical components such as liquid crystal spatial light modulators, gratings, and lenses, metasurfaces exhibit higher operating bandwidth, structural compactness, and integration. With the merits of miniaturization, integration, and excellent performance in light tailoring, optical metasurfaces have been extensively incorporated into the realm of optical micromanipulation. Especially, owing to their peculiar photomechanical properties, the metasurfaces hold the ability to be actuated by light fields, paving the way to the next generation of light-driven artificial micro-robots. The fast development of this subject indicates that the time is now ripe to overview recent progress in this cross-field. Progress We summarized principles of optical micromanipulation and metasurfaces (Fig. 1) and overviewed meta-manipulation devices, including metasurface-based optical tweezers (Fig. 2), tractor beams (Fig. 5), multifunctional micromanipulation systems (Fig. 3), and metamachines (Figs. 7 and 8). Furthermore, we provided a detailed discussion of novel mechanical effects, such as topological light manipulation, which stems from the topological characteristics of nanostructures (Fig. 6). Conclusions and Prospects We review the cutting-edge developments in the field of optical micromanipulation based on metasurfaces. The metasurface-based micromanipulation technology is expected to evolve toward higher temporal resolution, higher spatial accuracy, and lower manipulation power. To this end, more urgent requirements have been imposed on the underlying design scheme and experimental preparation standards of the metasurface. Although the introduction of metasurfaces has benefited micromanipulation systems and significantly reduced their sizes, there is still much room for further development and improvement in wide bands, multi-dimensional responses, and device thresholds. In terms of micromanipulation systems, the subwavelength-scale structure of metasurfaces will continue to be a key focus of research. Especially in the field of topological light manipulation, it is expected to further expand its research scope, combining non-Abelitan, non-Hermitian, and nonlinear effects to discover new physical phenomena. In the fields of biology and chemistry, metasurface technology is expected to be flexibly applied on smaller scales, even achieving manipulation of single molecule-level objects. This technology is expected to be further applied to the fields such as battery quality inspection and targeted therapy, bringing changes to the basic research and practical applications of energy and life sciences. Specifically, in the development of ultrafast optics, metasurfaces are gradually exhibiting unique advantages. Nanoscale superlattice enables high-resolution spectral measurements, and the design of nonlinear superlattice surfaces can be used to enhance nonlinear effects or generate high-order harmonics, making high time resolution transient micromanipulation technology possible. Overall, the technological evolution from traditional optical micromanipulation to meta-manipulation will continue to drive the vigorous development of nanophotonics. This technological paradigm not only meets the needs of various basic research but also arouses more innovative applications, opening up new prospects for branched sciences and technologies. ? 2024 Chinese Optical Society. All rights reserved.
    Affiliations:(1) State Key Laboratory of Transient Optics and Photonics, Xi an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Shaanxi, Xi an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) National Laboratory of Solid State Microstructures, School of Physics, Nanjing University, Jiangsu, Nanjing; 210093, China; (4) Collaborative Innovation Center for Advanced Microstructures, Nanjing University, Jiangsu, Nanjing; 210093, China; (5) College of Optical Science and Engineering, Zhejiang University, Zhejiang, Hangzhou; 310027, China
    Publication Year:2024
    Volume:44
    Issue:5
    Article Number:0500001
    DOI Link:10.3788/AOS231748
    數(shù)據(jù)庫ID(收錄號(hào)):20241215789339
开心激情站| 国产欧美日韩性爱| 99热热热99精品婷婷| 亚洲爆乳无码精品AAA片蜜桃| 色色色在线播放| 日本97在线| 丁香六月成人| 中文字幕乱码亚洲精品一区| 五月丁香香蕉| 网址你懂的| 深爱激情网综合| 六月丁香视频网站| 五月久熟女| 婷婷狠狠爱| 激情综合亚洲| 日日日日日| 操操国产| 婷婷五月天熟妇| 丁香五月亚洲激情婷婷射| www.com任你艹| 无码 av电影| 久久只有18视频| 久久AV无码乱码A片无码波多| 99热中国| 五月丁香六月情婷婷久久| 婷婷久久婷婷色五月| 婷婷射丁香| www.99热精品| 婷婷色一二三区波多野结衣| 五月天社区婷婷| 午夜不卡久久精品无码免费| 狠狠干综合| 九九色图| 另类精品视频在线观看| 婷婷五月综合色拍| 99热播放| 丁香婷婷色五月激情综合| 欧美天堂久久| 丁香激情五月| 天天综合 99久久婷婷| 99热这里只有精品在线| 丁香五月婷婷网| rr天天操| 丁香五月成人社区| 99热免费网站| 婷婷综合激情| 九九九AAA热视频| 精品久久人妻| 成人在线日韩| 人人干人人看| 婷婷深爱五月| 影音先锋女人AA鲁色资源| 亚洲中文字幕av| 91九色丨国产丨爆乳| 99色综合| 2020日日干| 久久婷婷五月综合激情国产| 婷婷五月AV| 九九自拍网| 五月婷婷九九热| 九九99热久久精品66中文字幕| 香蕉人在线香蕉人在线 | 亚洲熟妇无码乱子AV电影| 色色网站在线| 狠狠干狠狠干| 99re热在线观看| 991精品在线视频| 婷婷丁香亚洲色综合91| 六月丁香综合| 色激情五月| 婷婷五月激情网| 欧美成人AAA片一区国产精品| 中文字幕网伦射乱中文| 99热婷婷| www.ywav| 激情婷| 婷婷色偷拍| 亚洲视频国产一区| 综合久久综合| 精品国产人人爱人人| 中文字幕91,综合| 亚洲精品444久久久久久| www,色综合| 伊人网碰碰| 日本色天堂| 九九久久精品| 亚洲尤物在线| 99在线精品视频在线观看| 婷婷五月激情六月| 婷婷久久综合久| 色综合五月| 丁香香蕉射射射| 抽插特写| 99热在线中文字幕| .操區COm| 五月丁香青草综合啪啪| 久久99热这里只有精品| 五月丁香狠狠爱| 国外亚洲成AV人片在线观看| 人人搡人人| 97人人超| 国产日日夜夜操| 天天爽综合网| 丁香花五月天激情| 777精品久无码人妻蜜桃| 久99999热视频在线观看免费| 成人婷婷| 天天干天天干天天干天天干天| 大地9中文在线观看免费高清| 91人人爱| 五月丁香黄色| 97五月天婷婷午夜| 丁香欧美| 九九干视频| 天天干天干| 操人妻AV| 欧美久久网| 77799热| 婷婷日日夜夜| 色婷婷婷婷| 色丁香五月婷婷| www亚洲无码| 久久性爱视频| 热的国产,热的综合,热的有码| 丁香婷婷色五月天| 99九九玖玖| 五月丁香大香蕉| 婷香狠狠爱五月| 5月激情天| 婷婷五月天综合小说网| 97超碰在线免费观看| 亚洲电影在线观看| 亚州色婷婷| 蜜乳国产网站| 日韩成人中文字幕| 影音先锋男人AV资源站| 综合色图区| 五月婷婷精品无在线| 国产激情在线| Www.sesese丁香| 色呦呦美女| 狠狠色丁香婷婷综合久久97AV| 五月婷在线| 中文字幕免费高清电视剧| 五月婷久久综合| 99国产小视频2013| 夜夜骑天天操| 少妇2做爰HD韩国电影| 九九激情视频| 婷婷香香五月| 五月天激情小说欧美激情| 婷婷五月激情小说| 九热视频精品| 亚洲成人乱码av网站| 色综合天堂| 日韩AC在线免费观看| 久99久视频| 深爱五月日韩| 中文字幕无码人妻少妇免费视频 | 久久人人添人人爽添人人片αV| 欧美 日韩 成人在线| 亚洲国产成人裸舞| 色五月综合网| 婷婷国产五月天17c| 三级黄网站| 色99网| 国产精品久久久久9999小说| 伊人玖玖精品| 色婷婷五月中文字幕在线dvd| 99精品视频网| 五月丁香激| 人人人舔人人人操人人人摸人人人97| 亚洲成av人影院| 91丨九色丨熟女丰满| 国产色五月| 五月天激情国产综合婷婷婷| 久99久在线观看| A色色| 色五月在线观看| 色色五月激情| 人人做人人看人人摸| 九月色婷婷| 五月婷婷日本| 婷婷日日夜夜| 天天操夜夜操| 狠狠干2007| 婷婷操久久| 伊人久久中文网| 天天射天天射一道本日本社区| 97人人干人人操| 综合玖玖偷拍| 丁香色五月婷婷| 五月天天丁香婷婷| 五月丁香六月激情综合啪啪| 国产亚洲在线| 婷婷免费精品视频| 99精品自拍视频| 中文字幕性爱视频| 激情深爱综合网| 色婷婷伊人激情在线观看| 99re思思| 色色色色色色色色网站| 91热99| 欧美另类图片| 五月天婷婷香蕉狠狠超碰综合| 亚洲a色| 婷婷色五月大香蕉在线| 婷婷性爱无码视频| 精品国产AV色一区二区深夜久久| 日韩一级片| 日亚二欧美| 操操精品| 天天综合社区| 国产99久9在线+|+传媒| 色5月婷婷| 超碰av在| 夜夜爽天操| 成人国产网| 日日激情网| Blackedraw视频一区二区| 在线区区区| 色综合伊人网| www.激情五月天。com| 五月丁香综合啪啪| 亚洲激情综合| 色玖玖| 五月丁香六月色婷婷综合五月天| 337p大胆噜噜噜噜噜91Av| 碰碰91| 99久在线观看| 狠狠人妻色综合| 五月天婷婷AV| 色五月婷婷综合| 久婷婷色| 九九综合精品| 欧美精品在线观看| 五月天婷婷网站| 99精品无码| 六月色国内综合| 婷婷天堂伊人| 婷婷午夜天| 影音先锋男人资源站一区二区| 婷婷伊人网| 丁香五月www| 免费在线观看欧美激情xx小视频| 久久五月天丁香花| 激情又色又爽又黄的A片| 2020日日干| 婷婷久久免费| 快乐激情五月色婷婷| 天天干 夜夜爽| 五月天国产成人| jiZZdr| 操国产人妻| 九九色色| 综合久久人妻| 9久热免费视频99| 91精品久久久久久77777| 亚洲国产色婷婷| 欧美日本韩国亚洲| WWW.夜夜| 丁香视频| 97碰啪啪| 狠狠色丁香99| AV操一操| 六月伊人| 思思热国产视频| 日本不卡一区二区三区| 丁香五月综合网亚洲综合欧美狠狠| 亚洲天堂玖玖| 国产精品电影网| 大香蕉av在线| 黄色片久久| 婷婷五月天激情免费在线观看| 人人爽欧美婷婷久久久五月丁香| 999热在线视频| 丁香六月婷婷缴情欧美| 婷婷色五月大香蕉在线| 亚洲va999成人A片在线观看| 这里都是精品99| 五月婷婷丁香六月| 人。妻久久| 99日在线视频| 成人日韩欧美| 播五月开心婷婷欧美综合| 99精品久久| 婷婷中文字幕| 成人网大全| 异能之下短剧免费观看全集| 五月天激情色色| 色综合色色| 亚洲免费看片| 五月婷婷av在线| 激情五月综合婷婷| 六月综和久久| 人妻在线网站| 色色婷婷五月| 天天日天天爱天天噪| 精品99在线| 成人国产欧美大片一区| 久久视频这里99| 婷婷五月激情欧美| 香蕉久日夜| 日本婷婷在线| 五月婷婷视频ab| 4399在线日本A片| 黄色热99| 热九九精品| 2025天天操| 亚洲色久| 日本三日本三级少妇三级66| 国色天香成人网| 丁香五月婷婷基地| 激情纯色婷婷五月天在线不卡视频| 在线99色| 天天日天天操心| 麻豆雪千夏| 狠狠狠狠操| 天天爽人人综合免费7799| 国产亚洲AV人片在线| 97人人射| 九九视频在线| 99精品久久久久久久婷婷久久| 亭亭色色五月天| 五月婷婷综合在线视频| 国产精品第一国产精品| 国产在线黄色| 激情五月婷婷五月| 丁香五月婷婷乱| 9l视频自拍9l九色成人| 九色在线观看91av| 丁香五月花影院| 大香蕉九九| AV性爱网| www.色五月天.com| 琪琪理论片| 噜噜操操| 久久婷婷激情四射五月天| 久久精彩视频| 国产精品电影| 无码色| 婷婷五月丁香六月| 99这里| 丁香婷婷色五月天| 欧美va视频不用播放器的va视频网| 亚洲AV综合网| 婷婷色偷拍| 五月丁香婷婷钟和色图| www.夜夜操| 五月天婷婷无码| 色九月婷婷丁香| 国产日韩亚洲欧美在线观看| 手机看片日日做夜夜| 天天射影| 99在线69| 91九色在线视频| 99国产欧美视频| 婷婷激情五月呦呦| 国产精品成人AV在线观看春天| 91色久| 久大香蕉| 天堂资源最新在线| 26UUU精品一区二区| 99热这里只有免费| 久热这里只有精品视频6| 亚洲色激婷| 天天色综和网| 永久的网站AAAA | 久久影视婷婷五月| wuyuedingxiang| 九月激情婷婷丁香| 九九这里只有精品| 丁香六月天| http:色情日本com| 精品亚洲国产成AV人片传媒| site:pnnrt.com| 99久.| 大香蕉久久婷婷| 天天干天天干天天干| 狠狠狠狠狠狠狠狠| 色情五月停停丁香| 深夜A片| 六月丁香婷婷六月激情综合| www色五月天| 五月天婷婷成人资源站| 午夜无码精品色综合久久| 天天摸,天天爽| 欧美亚洲999| 久久人妻乱子伦| 99re这里只有精品国产99| 五月婷俺去也| 婷婷伊人无码| 66久久视频在线| 日本婷婷丁香五月| 天堂婷婷五月色| 色婷婷婷综合五月天| 99热精品少| 久久这里面只有精品视频| 久久国产精品乱子伦_靑青草…| 99热无码精品| 六月丁香婷婷色综合| 丁香六月激情综合网| 日日干夜夜撸夜夜骑| 亚洲女婷婷五月基地综合久久久 | 五月丁香综合影院| 99ri精品在线| 色播五月| 香蕉久久国产AV一区二区| 大学生高潮无套内谢视频| 能看的AV| 丁香五月激情五月色综合| 婷婷五月丁香激情图片 | 丁香五月婷婷大香蕉| 老妇槡BBBB槡BBBB槡| 九九人人精品| 夜夜夜夜夜操| 国产精品涩涩涩视频网站| 五月天婷婷婷| 五月婷婷丁香大香蕉| 色情婷| 91色五月| 婷婷,五月天,丁香,第一| 电影爱拉战争免费观看| 天天天日天天天干| 99无码精品| WWW.婷婷五月天.COM| 色色色色五月| 日本狠狠干| yirenjiqingshiping| 97爱综合| 五月天社区| 天天草天天爱| 婷婷五月天综合久久| 丁香五月激情网| 激情伊人五月天| 婷婷精品| 人妖色AV色综合| www.久久久久久久| 丁香五月婷婷六月婷| 97韩国久久电影院| 九九在线视频| 99免费在线| 99年操人人爽| 色色色色色五月| 久久九九网| 中国AV性爱观看| 欧美成人网99网| 久久伦乱| 啪啪一区| 久久综合色五月| 亚洲色精彩| 婷婷五月天激情AV影院| 艳妇野外情欲放荡HD| 伊人啪啪网| 婷婷五月色综合香五月| 天天操天天曰天天射| 色婷婷成人丁香| 99日这里只有精品| 丁香六月婷婷综合| 久久九九99视频| 99超级碰碰| 亚洲色五月| 欧美乱码国产一级A片| 婷婷深爱五月| 激情超碰网| 久久曰曰| SESE无码AV| 九色视频91疯狂| 91妻人人爽人人看片| 色播五月天婷婷老师| eeuus五月婷| 天天精品视频免费观看| 人人摸人人搞| 五月丁香天堂| 婷婷激情丁香五月婷婷激情丁香五月婷婷| 思思久久99热只有频精品66| 91一起操| 五月婷久久综合| 色丁香五月天射婷婷爱婷婷| 婷婷亚洲欧美丁香五月| 另类激情综合| 在线超碰91| 色婷婷婷综合五月天| 99热国产免费| 97在线观视频免费观看| 婷婷丁香五月天影院 | 91|九色|动漫| 青青草蜜臀| 成人色图情色成人网 www.5b5b5bcom 五月天| 亚洲愉拍99热成人精品| 九九色之九九色之88| 丁香五月骚喷水视频| 天天综合色丁香| 久久性爱网| 亚洲天堂热| 婷婷五月激情在线视频| 天天日天天插| 欧美综合五月丁香六月婷| www.激情五月天com| 久久久18| 国产色99| 五月天激情日色在线| 91超碰在线观看| 欧美日韩精品一区二区三区钱| 五月婷婷中字在线| 色色五月婷婷久久| 拍色综合| 激情婷婷丁香五月| 无码人妻电影| 久久婷婷夜| 色五月成人在线| 五月天亭亭俺也| www.99精品在线| 夜丁香五月婷婷| 久久精品国产一区二区三区四区| 婷婷丁香97| 怡红院视频| 思思9久久| 色婷婷黄色网络| 丰满少妇熟乱XXXXX视频| 丁香五月亚洲综合| 综合久久丁香婷婷,五月婷婷六月丁香,开心激情综合网,六月丁香在线观看,婷婷丁 | 91要啪| 中文字幕在线不卡视频| 99热这里有精品2| 婷婷五月在线视频| 超碰av在线| 97色婷婷| 97人妻碰碰碰碰碰久久久久久| 五月天激情中文字幕| 天天日天天干天天操| 97色色色| 丰满的女邻居在线观看| 九九热99精品| 青青草原精品久久| 狠狠婷婷色综合| 千人斩操逼| 婷婷中文字幕| 99热国产精品| 1024操逼视频| 色婷婷久久综合| 欧美日韩中文国产一区发布| 91色久| 五月婷婷丁香| www.爱婷婷.com| 九九色视频| 九月丁香婷婷基地| 亚洲mm色| 色婷婷丁香A片区毛片区女人区 | 中文字幕乱码亚洲精品一区| 热九九在线| 91精品无码| 琪琪色五月天| 香焦网五月天| 久久婷婷色综合| 草莓视频在线| 任你操精品免费| 天天拍天天操| 丁香五月婷婷天堂大香蕉| 国产婷婷五月色情综合| 9999热精品| 成人五月天视频播放| 午夜微拍福利| 色综合天天天天做夜夜| 婷婷丁香精品视频在线观看| 3www激情| 亚洲成人综合网在线免费观看| 亚洲色无码| 人人综合色| 免费观看欧美成人AA片爱我多深| 久久久久97| 国产VA亚洲VA96| 五月天激情日色在线| 黄色激情五月天| 欧美123区免| 欧美婷婷五月天| 九月丁香八月婷婷久久综合久97| 久久人妻精品| 久久9精品视频| 99热在线精品播放| 五月丁香| 九九视频在线观看视频6| 2020久久婷婷五月| 99热99艹在线观看| 色区域网站视频| 色婷婷AV在线观看| 九九视频在线| 久久多色| 日韩AAAAA| 六月婷五月丁香| 色色欧美色色色| 开心五月深爱五月丁香五月激情五月| 91超级碰人人操| 成全二人世界免费观看完整版| 大香蕉99热| 婷婷五月激情综合| 婷婷五月 丁香六月| 色情婷婷| 婷婷五月天色| 91热视频色网站| 99性视频| 天天成人五月天| 99热每日| 噜一噜在线| 久久久久久激情| 久色资源| 五月综合影院| 亚洲午夜Av| 中文字幕在线资源| 婷婷五月天va| 久热精品9999| 欧美成人猛片AAAAAAA| 超碰碰碰碰| 国产做爰视频免费播放| 直接看的AV网站| 伊人9在线| 天天综合在线网| 精品九九视频| 888久久久| 丁香六月婷婷开心| 婷婷 激情 五月| 欲求不满的人妻| 日本久久性| 亚洲丁香五月综合| 人人操婷婷| 99操无码视频观看| 六月激情婷婷综合| 婷婷天天五月天| 庭庭久久内射| 5月丁香综合网| 色婷婷另类| 91超碰在线观看| 天天操天天操天天操| 综合五月丁香97| 97天堂| 婷婷五月天亚洲精品| 一本色道久久88加勒比—| 午夜丁香婷婷| 99re这里只有精品视频了| 91人人网| 激情婷婷狠狠干综合| 七十路熟女のお婆ち| WWW色综合| 另类亚洲电影| WWW激情五月天| 九九热91| 伊人色综合网| 欧美婷婷精品激情| 九九综合视频在线观看| 9|在线观看视频| 日本九九九九| 99热无码| 五月丁香六月婷婷综合在线| 92久久久| 天天狠狠夜夜狠狠2023| xxx.色婷婷| 成人五月天在线观看| 狠狠色噜噜色狠狠狠综合色| 色婷婷www| 人人摸人人搞| 天天摸天天舔天天爽| 色综合久久综合| 精品久久久久成人码免费动漫| 爽天天天天天天天| 亚洲综合网激情小说| 五月久久网| 人人摸人人干| 久久多色| 亚洲欧美999| 亚洲日本激情| 91丁香| 热思思九九| 成人av在线电影| www,婷婷| 五月天婷婷在线观看精品男人| 综合色网站| 国产精品91抖高| 六月婷婷激情| 综合网亚洲| 九九色大香蕉| 五月丁香综合精品欧美| 免费黄色视频网址| 99热首页| 九九九成人在线视频| 婷婷色网站| 九一九九黄色| 欧美大肥婆大肥BBBBB| 色婷婷先锋| VfJxEwPH| 激情综合激情五月| 伊人99热| 五月香蕉婷婷| 午夜AV网| 婷婷爱五月天| 色婷婷影音| 97色色-99久久| 玖玖午夜视频| 丁香五月婷婷激情蜜桃| 九九碰九九爱97| 丁香大香蕉| 国产va视频| 婷婷五月天成人影片| 婷婷五月成年人| 婷婷色九月| www色婷婷com| 久久综合最新网址| 国产毛多水多女人A片| 91色久| 丁香五月欧美午夜视频| 99热99热| 丁香花五月天| 激情综合五月激情| 亚洲黄色影视| 成人综合AV| 91性人人| 亚洲视频另类| 狠狠五月婷婷| 天天日天天插| 俺也去在线视频| 操丝袜视频影院导航| 色亚洲中文| 久久九九怡红院| 激情婷婷色色| 99爽视频| 狼人婷婷综合| 玖玖五月丁香| se色综合网| AⅤ在线播放网| 亚洲人操亚洲人| 精品人妻一区二区三区在| 亚洲日韩一页精品发布| 丁香婷婷影院| 色婷婷www| 久久五月视频| 91爱啪啪| 婷婷五月天av| 在线色色| 久久久久久激情| 免费播放片大片| 99热在线观看| 在线天堂新版最新版在线8| 亚洲色频| 婷婷欧美| 九九热视频在线观看| 五月婷婷激情综合av| 人人操五月天| 日狠狠| 播播网色播播| 天天色粽合合合合合合合| 丁香六月综合| 另类小说五月天| 无套内谢少妇毛片A片流出白浆| 国产精品久久久海的味道| 一起草性爱不卡视频| 婷婷五月激情视频在线| a色色色色色| 色婷婷狠狠| 思思热久久阴99| .操區COm| 亚洲色婷婷激情| 激情五月六月婷婷综合啪啪| 内射激情在线| 影音先锋人妻出差| 丁香五月婷婷激情中文| www.成人婷婷综合| 久久99热这里只有精品| 激情小说五月天| 天堂在线9| 香蕉综合在线| 丁香五月社区| 99热这里是精品| tingtingcaobi| 亚洲不卡123| 狠狠草网| AV在线免费播放| 玖玖视频福利| 丁香六月亚洲| 五月婷婷丁香色吧网| 婷婷丁香五月在线播放| 久色激情| 久久久999精品| 丁香五月天之婷婷影院| 九九AV| 91高潮喷水久久久久久久久| 91操在线观看| 91欧美日韩综合| 久久婷婷成人视频| 五月天色导航| 综合久久五月天| 91日视频| 狠狠五月天| 五月婷婷色在线| 99啪在线视频| 九色91国产| 色久一| 丁香九月综合| 五月综合激情久久| 婷婷六月色情| 狠狠摸狠狠摸| 综合色99| 日韩黄色中文字幕| 91丨九色丨国产在线| 99无码超碰| 激情五月激情综合网一级丸片| 思思热热久久| 激情五月婷婷在线观看| 综合网色| 91se精品国产| 婷婷五月18永久免费网站| 91久久1118| 五月丁香五月激情综合色综合| 五月婷婷AV| 亚洲综合五月天婷婷丁香| 午夜69成人做爰视频| 婷婷五月天久| 国产99久久久| 91视屏在线观看com.wwwvv| www.henhengan| 婷婷天堂综合| 久久性综合| 丁香五月色五月| 九九热视频网站| WWW五月| 91Chinese在线| 色色网站毛片| 超碰在线免费9| 久热这里只有精品在线观看| 99在线精品视频免费观看20| 丁香五月中文字幕| 成人αV视频免费观看| 国产精品人妻在线网址| 99在线免费视| 丁香六月婷婷色XXXXX| 婷婷五月天色| 涩丁香91| 影音先锋男人站,影音先锋男人色资源网,影音先锋AV最新资源站,影音先锋AV资源 | 伊人三级激情| 五月婷婷激情四季| 五月色天情| 五月天综合婷婷| 综合久久十| 99综合| 九九热国产| 在线另类| 久久综合香蕉国产国产蜜臀AV| 99热99在线| 丁香六月五月婷婷| 久久曰曰| 激情五月天婷婷丁香| 99er精品| www.操.com| 国产偷人爽久久久久久老妇APP| www.com.色色| 五月婷婷开心激情六月蜜桃| 大香蕉欧美在线| 成人 在线观看国产| AV在线免费播放| 操熟女成人网| 一级黄色影片| 久久丁香社| 日日操夜夜爽天天天| 超碰高清在线| 久久91久久精品久久| 久er免费视频| 色五月丁香五月| 四川BBB搡BBB搡多人乱亂| 丁香久久综合| 亚洲激情网| 五月婷婷六月丁香色| 中文字幕免费高清电视剧| 丁香五月电影院在线观看| 丁香综合伊人AV| 婷婷涩五月| 大香蕉天堂色| 婷婷 激情 五月| 五月婷婷啪啪啪| 激情丁香五月| 激情五月天之六月婷婷| 99热综合在线| 99ri视频在线观看| 日日干综合| 婷婷久久五月丁香| 婷婷色色丁香| 色色色欧美色色| 五月亭亭直播| 黄网在线观看免费| www.丁香五月| 四虎国产精品永久在线国在线| 原琪琪色影院| 亚洲色优| 色五月,com| 丁香五月婷婷性爱| 91丨九色丨白浆| 2005天天干天天1| 婷婷五月天手机版视频| 五月亭亭直播| 91狠狠综合网| 色五月激情| 99丁香五月| 六月综和久久| 久久五月综合| 色综合中文| 亚洲热视频| 久久丁香网| 久久婷婷五月综合色播| 六月天婷婷| 香蕉久久国产AV一区二区| 女主播扒开屁股给粉丝看尿口| 人人操超碰| 婷婷五月综合在线视频| 丰满少妇乱A片无码| 开心五月婷婷激情| 激情AV在线| 精品香蕉99久久久久网站| 色色色国产| 丁香久久久| 九九人人看| 天天草天天摸| 色爱爱综合网| 婷婷丁香五月,狠狠综合| 狠狠操狠狠爱| 丁香五月天人体| 开心激情综合| 久久婷五月天| 五月天婷婷网站888| 婷婷五月天久久综合88| 五月天色社区| 天堂网操| 五月婷婷久| 人妻有码乱操| 热这里| yazhoujiqingav| 天天噪夜夜爽| 9999久久久久| 五月丁六月香av| 三年高清大片免费观看国语| 久久激情综合| 国产亚洲成AV人片在线观黄桃| 色五月丁香总合网| 五月天色不卡| bbwcuckold精品熟妇| 婷婷五月婷婷| 色色亚洲无码| 欧美性猛交AAAA片黑人 | 六月丁香五月激情亚洲AV| 99这里只有精品视频| 美女天天艹人人爽| 九九热精品| 99热精品少| 色五月激情五月| 一本道综合网| 色综色网| 狠狠操狠狠干综合| 二区成人视频| 开心网五月色婷婷| 婷婷五月a| www.天天干| 色五月婷婷操逼| 九热精品| 好好干Av| 无码人妻丰满熟妇奶水区码| 婷婷五月天天| 色色婷婷综合| 美日韩成人| 婷婷五月丁香六月| 婷婷天天舔| 三级片AAA久久久AAA久久久AAA | 狠狠色婷婷色| 久狠狠| 日本99在线| 开心五月综合激情网| 99热九九这里只有精品| 思思精品视频| 婷婷五月天激情综合| 91欧美| 丁香五月开心婷婷| 五月丁了香蕉综合| 色婷婷超碰| 五月色在线| 日日影院 | 色噜综| www.爱婷婷.com| 欧美色色色色色色| 五月婷婷免费在线| 99网| 思思久热| 91视频免费后入强操| 五月色婷婷中文字幕| 天天色天天爽| 天天久综合网永久入口18| 日本VA视频| 久久艹99| 成人va在线播放| 五月综合六月丁| 日韩 mm 不卡| 色婷婷9| 激情婷婷五月亚洲| 色婷青青| 婷婷情爱五月天6| 久草天堂| 99热婷婷| 99色性爰网络| 伦乱天堂| 中文中文在线| 午夜五月天| 色色色婷婷五月天| 性av| 丁香六月情| 五月婷久久| 99热热热99精品丁香| 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 | 亚洲国产成人综合| 中文字幕日产A片在线看| 丁香五月婷婷激情中文| 婷婷色色丁香五月天| 狠狠综合网| 99热在线观看免费| 91人妻人人操人人爽| 风流少妇A片一区二区蜜桃| 午夜色丁香| 玖玖综合网| 男同91| 在线视频reer6| 天天操夜夜啊| 日韩有码一区| 大香蕉婷婷五月天| 五月色天五月色| 七七九色| 蜜桃成语时李时珍 免费| 强伦轩人妻一区二区电影| 色优久久| 任你弄在线视频免费| 久久久精品AV| 色婷婷五月婷婷五月婷婷五月| 黄网在线观看免费| 国产伦亲子伦亲子视频观看| 五月天婷婷影院影院观看| 五月婷婷在线丁香| 五月婷婷综合天天操| 狠狠色狠狠| 丁香五月六月激情| 中美日韩成人在线| 六月婷婷综合网2| 99噜噜| 亚洲 无码 中文字幕 中出 | 欧美性丁香色色五月天| 色色色区| 久久97| 激情九色| 另类国产综合| 色婷婷免费观看| 黃色三级三级三级三级 qixing300.shrkbk.com www.jinbozs.com tianmiaosw.com | 色五婷婷| 久久丁香五月综合六月激情红杏视频 | 婷婷六月天| 欧美成人va| 婷婷五月成人| 国产寻花在线| 五月丁香好婷婷A片网| 久久艹 五月天| 日本美女上人| 五月天激情视频网站| 婷婷五月播| 丁香婷婷午夜| AV九九| 97久久草草超级碰碰碰| 亚洲va欧美va国产综合久久久| 国产精品久久久久久白浆色欲| 五月婷婷综合天天操| 婷婷五月天久久| 九九热在线精品视频| 开心五月丁香综合久久| 在线观看亚洲视频影院| 丁香五月综合网| 婷婷天天日婷婷| 色婷婷久久| 99热这里只有精品23| 久久久久久欧美精品se一二三四| 五月色激情综合网| WWW.桔色成人.COM| 日韩狠狠色| 天天爽,夜夜爽| 五月丁香婷婷国产精品综合| 99在线69| 人妖色AV色综合| 天久综合91综合首页| 日本一级一级一级一级| 丁香激情五月天| 99视频热| 狠狠久久婷五月综合色| 色色五月丁香婷婷| 中文字幕五月久久婷婷| 九九9久九9国产视频| 亚洲六月色| 开心五月色婷婷综合开心网| 99久久精品视频女神1| 思思热久在线观看视频| 久久久99久久| 婷婷五月色惰| 色综合网页| 国产毛片精品一区二区色欲黄A片| 性生活久久人妻| 九九成人高清视频| 婷婷的99视频网站| 国产精品国产| 久久爱综合| 婷婷六月激情综合| 少妇人妻人伦A片| 伊人久久艹| 亚洲免费观看高清完整版AV线| 欧美日韩一区二区三区四区| 婷婷激情五月综合在线视频| 久久黄色免费视频| 色五月网址| 国产ava| 天天干,天天操,天天射| 91精品久| 99婷五月| www.夜夜操| 天天插天天插| 可以直接看的AV| 婷婷六月啪啪| 99热亚洲精品| 榴莲视频下载| 色综合99| 婷婷五月花丁香| 停停五月天激情网| 久久人妻情侣| 五月综亚洲| 丁香月五月天婷婷久久| 婷婷 久综合| 五月色在线| 久热这里只精品| 日韩成人无码人妻| 99九九热在线观看| 成人在线综合| 久婷久婷激情肉| 九九人人看| 在线99精品| 激情久久月| 九九久久精品國產| 99在线视频喷水| 91av色色乱视频| 一级韩国产精品毛| 国产精品黑丝| 99视频综合网| 亚洲欧美日韩另类| 成人无码中文| 久久五月天丁香花| 亚洲免费电影2| 色原狠狠综合| 婷婷色基地在线看 | 日本色色网| 亚洲欧洲另类| 久久久人妻人伦| 五六月婷婷| 婷婷五月花免费视频在线| 色五月xxx| 思思99精品视频在线观看| ...婷婷国产成人亚洲日韩|