福利片在线观看免费高清视频|国产国拍精品?v在线观看|麻豆国产精品V?在线观看不卡|欧美亚洲日韩国产|国产在线视频在线播放|亚洲精品国产污污在线观看|欧美午夜福利电影在线观看|欧美日韩激情在线一区二区三区

2024

2024

  • Record 457 of

    Title:Design of Function-based Frozen Water Cylinder Twin Photonic Hook Generator
    Author Full Names:Dong, Xueli(1); Han, Guoxia(1); Tian, Yihan(1); Hu, Ke(1); Yu, Xianghua(2); Zhan, Kaiyun(1)
    Source Title:Guangzi Xuebao/Acta Photonica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:Photonic nanojet is a kind of highly focused subwavelength locally electromagnetic beam that is formed by the scattering of dielectric micro-particle on light field,when the symmetry of system that is composed of light field and micro-particle is broken,a kind of subwavelength locally curved beam is formed,photonic hook. It is featured by a sub-diffraction limit of half-height width and a much smaller radius of curvature than wavelength. Due to these excellent performance parameters,the photonic hook has broad application prospects in the field of optical imaging,optical manipulation and trapping. Since the concept of photonic hook was proposed,researchers have been exploring the factors influencing the effective length and bending angle of photonic hooks,such as the parameters related to the properties of the medium particles(e.g.,size,structure,material)and the characteristics of the light field. Among them, most studies focus on the exploration of the structure of the micro-particle,and many different structures have been developed,but the material of the micro-particle is a dielectric or an artificial material. The state of water cylinder is changed at freezing,so frozen water cylinder can be a phase change material. Using frozen water droplet as phase change materials and the ice-water interface as plane,the generation of time-domain self-bending photonic hook has attracted much attention. However,the generated photonic hook has a relatively small effective length and a small curvature. During the freezing process of water cylinder, the shape at the state transition does not have a quantitative model for description. This paper sets the functions as boundaries for the state transition of materials and introduces the idea of functions from mathematics into the device design of photonic hooks. A twin photonic hook generator is designed using frozen water cylinder as phase change materials and function surfaces as the ice-water boundary interface. The software COMSOL is used for simulation,and effective control of the characteristic parameters of the photonic hooks was achieved by altering the structure of the frozen water cylinder and the coefficients of the functions. The variation patterns of characteristic parameters such as effective length,bending angle,and the bending number of the photonic hooks were analyzed. The results show that the coefficients A,B,and C are respectively related to the opening angle,rotation direction,and depth of concavity of the function. The opening of the ice-water boundary obtains a twin photonic hook when there is symmetry with respect to the direction of illumination. As the asymmetry increases,the twin photonic hook gradually transforms into a single photonic hook. When the ice-water boundary opening increases under symmetric incidence, the effective length shows an initial growth followed by a decrease trend. Meanwhile,the bending angle also shows an initial increase followed by a decrease trend. Moreover,during the gradual enlargement of the opening,the phenomenon of multiple bending of the photonic hook becomes more pronounced. When the concave depth continues to increase, the effective length initially decreases and then shows a lengthening trend,while the overall bending angle shows an initial increase followed by a decrease trend. Among them,the maximum bending angle of the photonic hook can reach up to 44°(A=14.79,B=0, C= - 9,D=0),the maximum effective length can reach up to 17.43λ(A=177.51,B=0,C= - 12, D=0),and the number of bending cycles can reach up to 4. Compared to traditional methods,this design introduces functions to achieve research on more complex structures of photonic hooks and further enables the modulation of characteristic parameters of photonic hooks. This provides new insights for the design and research of photonic hooks,while also offering references for their applications in areas such as optical manipulation and biomedicine. ? 2024 Chinese Optical Society. All rights reserved.
    Affiliations:(1) College of science, China University of Petroleum(East China), Qingdao; 266580, China; (2) 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:53
    Issue:11
    Article Number:1126002
    DOI Link:10.3788/gzxb20245311.1126002
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20245117562981
  • Record 458 of

    Title:Fabrication and Mid-Infrared Laser Transmission Performance of Ultra-Low Loss Chalcogenide Glass Fibers
    Author Full Names:Xu, Yantao(1); Guo, Haitao(1); Xiao, Xusheng(1); Li, Man(2); Yan, Mengmeng(2)
    Source Title:Guangxue Xuebao/Acta Optica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:Objective With the continuous development of infrared optics, the demand for infrared laser transmission in such fields as national defense and security, biomedicine, and advanced manufacturing is becoming increasingly urgent, and therefore infrared energy transmission fibers are receiving increasing attention. The chalcogenide glass, as an excellent infrared material, features a wide transmission range, stable physic-chemical properties, and easy fiber formation, which makes it an ideal material for infrared energy transmission fibers. The high optical loss of domestically produced chalcogenide glass fibers currently limits their widespread applications. The origin of the optical loss for chalcogenide glass fibers mainly includes the absorption loss of C, H, O, and other impurities; scattering loss caused by heterogeneous particle impurities and striae; scattering loss caused by the interface defects between the core and cladding. For suppressing the absorption loss and scattering loss in chalcogenide glasses and obtaining ultra-low loss fibers, gas (chlorine gas)-gas (glass vapor) and solid (aluminum)-liquid (glass melt) chemical reactions are employed to reduce the absorption loss of fibers. A three-dimensional laser microscopic imaging system is established and adopted to detect micron- and submicron-sized defects inside the glass and fiber, and the preparation process is correspondingly optimized to reduce the scattering loss of fibers. The laser energy transmission experiments of fiber laser (wavelength is 2.0 μm) and dual wavelength optical parameter oscillator (OPO) laser (wavelength is 3.8 μm and 4.7 μm) are also carried out. Methods High purity S and As elements are utilized to prepare rod (As40S60) and tube (As39S61). S distilled at 200 ℃ and As sublimed at 350 ℃ are encapsulated in the ampoule and then melted at 750 ℃ for 12 h to obtain preform glasses. Further, hydrogen impurities with the high purity Cl2 are eliminated. Cl2 is introduced into the molten glass and the quantity of flow is 5 ml/min for 300?600 s. The glass is melted again to allow a reaction between the Cl2 and hydrogen ions. Then the melted product is distilled under a dynamic vacuum to eliminate any gaseous byproducts from the reaction with Cl2. The third step is to eliminate oxygen impurities with elemental aluminum. Al foils with a mass fraction of 0.3% are introduced into the glass and melted at 600 ℃. Oxygen impurities react with Al foils to form Al2O3 which is left on the surface of Al foils, thus obtaining high-purity glasses. The optical fiber is prepared by the rod-in-tube method. The core and cladding diameters are 200 μm/250 μm for multi-mode fiber and 9 μm/140 μm for single-mode fiber, respectively. The single-mode fiber can maintain single-mode transmission in the 3?5 μm band. The fiber is drawn at about 320 ℃ in a nitrogen-protected environment. The optical fiber loss is measured by the cutback technique and the scattering intensity of the chalcogenide glasses and fibers are examined by a highly sensitive InGaAs detector from the direction perpendicular to the light path (Fig. 4). Results and Discussions The additive amounts of Cl2 are 300, 480, and 600 s, and the samples are recorded as C1, C2, and C3, respectively. The absorption spectra of C1, C2, and C3 samples show that with the increasing Cl2, the absorption intensity at 4.1 μm decreases significantly while the absorption intensity rises gradually at 7.6 μm (Fig. 5). Hydrogen impurities are effectively removed when Cl2 is employed to purify the chalcogenide glasses for reducing the H—S absorption at 4.1 μm. However, more oxygen impurities are also introduced into the glass due to the hydrophility of Cl2, which enhances the absorption intensity of As—O impurities at 7.6 μm. For further elimination of oxygen impurities, aluminum is introduced into the C3 glass, with the sample signed as C3A. The absorption intensity at 7.6 μm decreases significantly and the mass fraction of oxygen impurities reduces from 1.55% to 0.22% (Fig. 6). There is a linear relationship between the mass fraction of oxygen and absorption coefficient at 7.6 μm in chalcogenide glasses (Fig. 7). The striae of the glass is compared for three samples quenched from three different temperatures of 400, 450, and 500 ℃, and the results show that the sample quenched at 450 ℃ has the best uniformity (Fig. 8). The scattering intensity of these three samples also confirms the above conclusions. The gray values of the scattering image for samples quenched at 450 ℃ are more concentrated in the low grade region, which means that the background scattering intensity at 450 ℃ is the lowest (Fig. 9). The fiber attenuation is 0.150 dB/m, 0.087 dB/m at 4.778 μm for C3 and C3A samples respectively (Fig. 11). A laser power output of 6.10 W is obtained in a single-mode fiber when the input power is 12.30 W at 2.0 μm wavelength. The transmission efficiency is about 50%. The output power of 6.12 W is obtained in a multi-mode fiber when the input power is 10.20 W at 3.8 μm and 4.7 μm wavelength. The transmission efficiency is about 59% (Fig. 13). Conclusions The purification technique of chalcogenide glasses is studied. Cl2 is introduced in chalcogenide glasses to eliminate the hydrogen impurities, and the absorption caused by hydrogen impurities decreases with the Cl2 input volume. However, the As—O absorption intensity rises gradually at 7.6 μm, and the absorption coefficient is linearly proportional to the mass fraction of oxygen. The mass fraction of oxygen impurity in the glass is reduced from 1.55% to 0.22% by introducing the reducing agent aluminum. A detection system is set up for examining the defects in the glass using the scattering technique. The glass quenched at 450 ℃ has the least defects. The glass fiber with a loss of 0.087 dB/m (@4.778 μm) is prepared. The output power of 6.10 W is obtained when the input power is 12.30 W at 2.0 μm wavelength for single-mode fiber, and the transmission efficiency is about 50%. Meanwhile, the transmission efficiency is about 59% for multi-mode fiber at 3.8 μm and 4.7 μm wavelength. The laser damage of the end face is mainly caused by the position deviation generated by thermal expansion, which restricts the transmission power of optical fibers. The transmission power of optical fibers is expected to be further improved by adding a fiber cooling system and reducing energy penetration. ? 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 of Chinese Academy of Sciences, Shaanxi, Xi'an; 710119, China; (2) National Key Laboratory of Electromagnetic Space Security, Tianjin; 300308, China
    Publication Year:2024
    Volume:44
    Issue:7
    Article Number:0716001
    DOI Link:10.3788/AOS232009
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20241815997418
  • Record 459 of

    Title:Research of Induction Delay Line Anode Photon Counting Detector
    Author Full Names:Zhang, Rui-Li(1); Liu, Yong-An(1); Zhang, Ya-Long(1,2); Yang, Xiang-Hui(1); Liu, Zhe(1); Su, Tong(1); Zhao, Bao-Sheng(1); Sheng, Li-Zhi(1)
    Source Title:Guang Pu Xue Yu Guang Pu Fen Xi/Spectroscopy and Spectral Analysis
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:In this paper, we developed a photo-counting imaging detector based on the delay-line anode with induction readout, which has the advantages of high sensitivity and large detective area features. This novel detector is expected to be used in space astronomy, bioluminescence and spectral measurement applications. This detector consists of a microchannel plate (MCP) , position-sensitive anode and readout. Among these key parameters, the performance of position-sensitive anode decides the performances of detectors to a large extent. As a charge induction readout delay line anode, the delay line anode decodes the position information of the incident photon by measuring the time delay between two ends of a propagation line. The detector with the anode can obtain high detection sensitivity and a large imaging area. Image charge pickup anode is placed outside the sealed vacuum tube, which not only simplifies the process difficulty of anode production but also improves the detector's reliability. Firstly, An inductive readout delay line anode was designed. We analyzed the influence of different thicknesses and mediums material of the detector on the induction charge of the position-sensitive anode. Then, a method is used to tackle the induction charge of different layers unbalance issue. After that, we designed and fabricated a 40 mmX40 mm position-sensitive anode. The experiment results indicate that the transmission attenuation of the anode output is less than 10% , and the inter-pole crosstalk is less than 3%. Finally, we implemented aphoton-counting imaging experimental system based on this anode. This experimental system provides better than 150um spatial resolution and can promote the theoretical and practical development of large-area array and highly sensitive detector for space astronomical UV spectrum measurement. ? 2024 Science Press. 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, Xi'an; 710119, China; (2) School of Optoelectronics, University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    Volume:44
    Issue:5
    Start Page:1291-1296
    DOI Link:10.3964/j.issn.1000-0593(2024)05-1291-06
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20242016104013
  • Record 460 of

    Title:Silicon photonic integrated wideband radio frequency self-interference cancellation chip for over-the-air in-band full-duplex communication
    Author Full Names:Su, Xinxin(1); Chao, Meng(1); Han, Xiuyou(1); Liang, Han(1); Zhang, Wenfu(2); Fu, Shuanglin(1); Wang, Weiheng(1); Zhao, Mingshan(1)
    Source Title:Chip
    Language:English
    Document Type:Journal article (JA)
    Abstract:Compared with the traditional frequency division duplex and time division duplex, the in-band full-duplex (IBFD) technology can double the spectrum utilization efficiency and information transmission rate. However, radio frequency (RF) self-interference remains a key issue to be resolved for the application of IBFD. The photonic RF self-interference cancellation (SIC) scheme is endowed with the advantages of wide bandwidth, high amplitude and time delay tuning precision, and immunity to electromagnetic interference. To meet the requirements of the new generation of mobile terminals and satellite payloads, the photonic RF SIC system is desired to be miniaturized, integrated, and low power consumption. In this study, the integrated photonic RF SIC scheme was proposed and demonstrated on a silicon-based platform. By utilizing the opposite bias points of the on-chip dual Mach-Zehnder modulators, the phase inversion relationship for SIC was realized over a broad frequency band. The time delay structure combining the optically switched waveguide and compact spiral waveguide enables continuous tuning of time over a wide bandwidth. The optical amplitude adjuster provides efficient amplitude control with a large dynamic range. After being packaged with optical, direct current, and RF design, the photonic RF SIC chip exhibits the interference cancellation capabilities across L, S, C, X, Ku, K, and Ka bands. In the S and C bands, a cancellation depth exceeding 20 dB was measured across a bandwidth of 4.8 GHz. An impressive cancellation depth of over 40 dB was achieved within a bandwidth of 80 MHz at a central frequency of 2 GHz. For the application of over-the-air IBFD communication at the newly promulgated center frequency of 6 GHz for 5G communication, the cancellation depth of 21.7 dB was demonstrated in the bandwidth of 100 MHz, and the low-power signals of interest were recovered successfully. ? 2024 The Author(s)
    Affiliations:(1) School of Optoelectronic Engineering and Instrumentation Science, Dalian University of Technology, Dalian; 116024, China; (2) 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:3
    Issue:4
    Article Number:100114
    DOI Link:10.1016/j.chip.2024.100114
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20245217595762
  • Record 461 of

    Title:High-efficiency longwave 2085 nm laser output in low-loss Ho3+-doped fluorotellurite glass fiber by 1976 nm in-band pumping
    Author Full Names:Feng, Shaohua(1,2); Shen, Yewei(3); Zhu, Jun(1,2); Liu, Chengzhen(1,2); Xu, Yantao(1,2); Xiao, Xusheng(1,2); Guo, Haitao(1,2,4)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:High-gain Ho3+-doped optical fibers are imperative exigency for > 2 μm single-mode fiber lasers. Here, we have successfully developed and fabricated a low-loss Ho3+-doped fluorotellurite glass fiber. The high-power laser irradiation tolerance of the fiber was verified, and the end face of Ho3+-doped fluorotellurite glass fiber remained undamaged under a ~ 70 W of 981 nm CW laser irradiation. An unsaturated maximum 6.35 W@2085 nm single-mode laser output with a slope efficiency of 90.4 % was achieved in a 25 cm short fiber by homemade 1976 nm laser in-band pumping. To the best of our knowledge, this is currently the highest slope efficiency reported for Ho3+ doped fluorotellurite fiber lasers to date in a space laser cavity. The effects of the fiber length on the laser threshold, slope efficiency, and output wavelength are further discussed. This work offers valuable insights into prospective candidate materials and scheme designs for the future development of high-efficiency, long-wavelength mid-infrared ~ 2.1 μm fiber lasers. ? 2024 Elsevier Ltd
    Affiliations:(1) State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences (CAS), Shaanxi, Xi'an; 710119, China; (2) Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Key Laboratory of In-Fiber Integrated Optics, Ministry of Education of China, Harbin Engineering University, Harbin; 150001, China; (4) Collaborative Innovation Center of Extreme Optics, Shanxi University, Shanxi, Taiyuan; 030006, China
    Publication Year:2024
    Volume:177
    Article Number:111179
    DOI Link:10.1016/j.optlastec.2024.111179
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20242116111992
  • Record 462 of

    Title:Speckle-correlation-based non-line-of-sight imaging under white-light illumination
    Author Full Names:Zhou, Meiling(1); Zhang, Yang(1,2); Wang, Ping(1,4); Li, Runze(1); Peng, Tong(1); Min, Junwei(1); Yan, Shaohui(1); Yao, Baoli(1,2,3)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:Non-line-of-sight (NLOS) imaging is attracting extensive attention due to its ability to establish the objects hidden from the direct line-of-sight, which prompts potential applications in autonomous driving, robotic vision, biomedical imaging, and other domains. Various NLOS imaging techniques have been successively demonstrated. In this paper, we propose a speckle-correlation-based method to achieve NLOS imaging under white-light illumination. In the proposed method, we process the raw speckle pattern by incorporating the conventional speckle correlation imaging (SCI) with the Zernike polynomial fitting, named ZPF-SCI method, to enhance the performance of the calculated autocorrelation, a key step to achieve optimal image quality. Experimental results demonstrate that our method is effective even in the presence of ambient light, which circumvents the limitation of the conventional SCI that has to be performed in a darkroom. Furthermore, the proposed ZPF-SCI method is insensitive to the angle that the detector deviates from the vertical plane of the optical axis. The quality of the reconstructed image is still acceptable even if the deviation angle reaches 8 degrees. These superiorities facilitate the practical application of the method. ? 2023 Elsevier Ltd
    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) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Qingdao Marine Science and Technology Center, Qingdao; 266200, China; (4) Key Laboratory of Biomedical Information Engineering of Ministry of Education, School of Life Science and Technology, Xi'an Jiaotong University, Xi'an; 710049, China
    Publication Year:2024
    Volume:170
    Article Number:110231
    DOI Link:10.1016/j.optlastec.2023.110231
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20234515010837
  • Record 463 of

    Title:Large Field of View and Isotropic Light Sheet Microscopy with Aberration-Free Tunable Foci
    Author Full Names:Wang, Yue(1,2); Gong, Jingrui(1,2); Xu, Ning(1,2); Yan, Shaohui(3); Dong, Dashan(1,2); Shi, Kebin(1,2,4,5)
    Source Title:Laser and Photonics Reviews
    Language:English
    Document Type:Article in Press
    Abstract:Light-sheet microscopy stands out as a powerful tool in biological imaging due to its exceptional performance in fluorescence imaging. However, achieving both high sectioning performance and a vast field of view (FOV) poses a fundamental challenge in conventional light-sheet microscopy. The light-sheet thickness is typically constrained to 1?μm for a wide FOV, potentially compromising resolution. To address this limitation, an axial scanning light-sheet microscopy (ASLM) technique integrated with aberration-free tunable foci to enable high-NA excitation while maintaining a generous FOV, is introduced. The proposed scheme successfully achieves isotropic resolution of 280?nm in a 3D imaging system, encompassing a FOV of 80 × 80?μm and an impressive imaging speed of 80?ms per frame. These remarkable characteristics underscore the immense potential of ASLM for high- spatiotemporal resolution imaging. ? 2024 Wiley-VCH GmbH.
    Affiliations:(1) State Key Laboratory for Mesoscopic Physics and Frontiers Science Center for Nano-optoelectronics, School of Physics, Peking University, Beijing; 100871, China; (2) National Biomedical Imaging Center, Peking University, Beijing; 100871, China; (3) State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences Xi'an, Xi'an; 710119, China; (4) Collaborative Innovation Center of Extreme Optics, Shanxi University, Taiyuan; 030006, China; (5) Peking University Yangtze Delta Institute of Optoelectronics, Jiangsu, Nantong; 226010, China
    Publication Year:2024
    DOI Link:10.1002/lpor.202400214
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20244117178470
  • Record 464 of

    Title:Stress-Induced Polarization-Maintaining Large-Mode-Area Photonic Crystal Fibers With Deviation of the Single-Mode Transmission Band and Delocalization of Higher-Order Modes
    Author Full Names:Ma, Yuan(1,2); Wan, Rui(1,3); Yang, Huanhuan(2); Li, Yanfu(2); Chen, Chao(1,3); Wang, Pengfei(1)
    Source Title:IEEE Photonics Journal
    Language:English
    Document Type:Journal article (JA)
    Abstract:The nonlinear effects and laser-induced optical and thermal damage in optical fibers, together with the limitations of beam quality and mode-field area, restrict the power scaling-up of single-mode output for developing high-power fiber lasers in the kilowatt and above range. The design of photonic crystal fibers (PCFs) with large mode areas is an effective way to address this problem. In this paper, the demands and challenges of designing very large-mode-area (VLMA-) PCFs are discussed, including the overall fiber structure design and property simulation, especially the precise definition of single-mode operating conditions of VLMA-PCFs. Finally, an advanced stress-induced polarization-maintaining, Yb-doped, PCF structure with a large mode area realized by introducing both leakage channels and higher order mode-filtering units is proposed and analyzed theoretically, for which a maximum core diameter of 101 μ m and single-mode field diameter of 76.33 μ m at 1064 nm and a birefringence value > 10-4 orders of magnitude are achieved. ? 2009-2012 IEEE.
    Affiliations:(1) Chinese Academy of Sciences (CAS), State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Xi'an; 710119, China; (2) Air Force Engineering University, Information and Navigation College, Xi'an; 710077, China; (3) University of Chinese Academy of Sciences, Center of Materials Science and Optoelectronics Engineering, Beijing; 100049, China
    Publication Year:2024
    Volume:16
    Issue:3
    Start Page:1-11
    Article Number:7101111
    DOI Link:10.1109/JPHOT.2024.3395776
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20241916047122
  • Record 465 of

    Title:Modeling of 1.7-μm and 2.4-μm Dual-Wavelength Pumped 4.3-μm Dysprosium-Doped Chalcogenide Fiber Lasers
    Author Full Names:Xiao, Yang(1,2); Cui, Jian(1,2); Xiao, Xusheng(1,2); Xu, Yantao(1,2); Guo, Haitao(1,2)
    Source Title:IEEE Journal of Quantum Electronics
    Language:English
    Document Type:Journal article (JA)
    Abstract:A novel 1.7 μm and 2.4 μm dual-wavelength pumping scheme for a 4.3 μm dysprosium (Dy3+)-doped chalcogenide fiber laser was theoretically demonstrated. It was attributed to the 2.4 μm excited stated absorption (ESA, 6H13/2 ? 6H9/2,6F11/2 transition). Theoretically, when the two pumps were 5 W and 2 W, respectively, a laser power of 1.5 W with an remarkable efficiency of 30.2% was obtained from the homemade Dy3+:Ga0.8As34.2Sb5S60 glass fiber with a loss coefficient of 3 dB/m and a Dy3+ concentration of 3.67 × 1025 ions/m3. Results indicated that the dual-wavelength pumping scheme based on the gain fiber provides a potential way to 4.3 μm dysprosium-doped chalcogenide fiber lasers. ? 1965-2012 IEEE.
    Affiliations:(1) Xi'an Institute of Optics and Precision Mechanics (XIOM), Chinese Academy of Sciences, State Key Laboratory of Transient Optics and Photonics, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, Center for Materials Science and Optoelectronics Engineering, Beijing; 100049, China
    Publication Year:2024
    Volume:60
    Issue:2
    Start Page:1-6
    Article Number:1600106
    DOI Link:10.1109/JQE.2024.3350688
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20240315387038
  • Record 466 of

    Title:Fundamental and dipole gap solitons and their dynamics in the cubic–quintic fractional nonlinear Schr?dinger model with a PT-symmetric lattice
    Author Full Names:Wang, Li(1,2,3); Zeng, Jianhua(3,4,5); Zhu, Yi(1,2)
    Source Title:Physica D: Nonlinear Phenomena
    Language:English
    Document Type:Journal article (JA)
    Abstract:The interplay of two linear controlled terms – fractional diffraction and parity-time (PT) symmetric lattice – gives rise to unique and interesting linear Bloch gap structures within where the nonlinear localized gap modes may exist. In this study, we explore the formation and dynamics of one-dimensional gap solitons in the cubic–quintic physical model combining the fractional diffraction and PT symmetric lattice. Two classes of gap solitons, which we name the fundamental gap solitons and dipole ones, are constructed and their stability regions within the first finite gap of the associated linear Bloch spectrum are identified by means of linear-stability analysis and direct perturbed numerical simulations. We stress that the gap solitons are always unstable under the condition of PT symmetry breaking (the imaginary part of which is above 0.5). The excitations of the stable two classes of gap solitons are also investigated by using the adiabatic variation of the system's parameters. The results predicted here shed some light on soliton physics in physical systems with combined fractional diffraction and PT symmetric lattice and the competing nonlinearities. ? 2024
    Affiliations:(1) Beijing Institute of Mathematical Sciences and Applications, Beijing; 101408, China; (2) Yau Mathematical Sciences Center and Department of Mathematics, Tsinghua University, Beijing; 100084, China; (3) Center for Attosecond Science and Technology, State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics of Chinese Academy of Sciences, Xi'an; 710119, China; (4) University of Chinese Academy of Sciences, Beijing; 100049, China; (5) Collaborative lnnovation Center of Extreme Optics, Shanxi University, Taiyuan, Shanxi; 030006, China
    Publication Year:2024
    Volume:465
    Article Number:134144
    DOI Link:10.1016/j.physd.2024.134144
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20242116134534
  • Record 467 of

    Title:Fourier ptychographic microscopy and its applications in whole slide imaging system via feature-domain computational framework
    Author Full Names:Pan, An(1,3); Zhang, Shuhe(1,2); Wang, Aiye(1,3)
    Source Title:Frontiers in Optics, FiO 2024 in Proceedings Frontiers in Optics + Laser Science 2024 (FiO, LS) - Part of Frontiers in Optics + Laser Science 2024
    Language:English
    Document Type:Conference article (CA)
    Conference Title:2024 Frontiers in Optics, FiO 2024
    Conference Date:September 23, 2024 - September 26, 2024
    Conference Location:Denver, CO, United states
    Abstract:A feature-domain framework is reported for Fourier ptychographic microscopy, termed FD-FPM, to realize full-FOV reconstruction and reduce the accuracy requirement, achieving data acquisition of 4s/slide at 336nm spatial resolution with the FOV of 4.7mm diameter. ? Optica Publishing Group 2024, ? 2024 The Author(s)
    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) Department of Precision Instruments, Tsinghua University, Beijing; 100084, China; (3) University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20250417769462
  • Record 468 of

    Title:Spectroscopic properties and numerical analysis of novel erbium doped multi-component tellurite glasses
    Author Full Names:Wan, Rui(1,2); Guo, Chen(1,2); Li, Xianda(1,2); Wang, Pengfei(1,2)
    Source Title:Ceramics International
    Language:English
    Document Type:Journal article (JA)
    Abstract:In this paper, Er3+ doped TeO2-ZnF2-BaF2-KF-Ta2O5 tellurite glasses with low hydroxyl content (~0.03 × 10?19 cm?3) were investigated employing both glass composition and glass melting process optimization. The Raman spectra and physical properties were characterized to analyze the structure of the glasses. Under the pumping of 980 nm LD laser, intense up-conversion fluorescence at 1.5 and 2.7 μm of samples and their lifetimes were detected and analyzed, and the related transition mechanisms with gradient-varying Er3+ doping concentrations were discussed. The maximum absorption and emission cross section at 2.7 μm was calculated to be 6.4 × 10?21 cm2 and 6.8 × 10?21 cm2, correspondingly, which were higher than those of traditional tellurite glasses. Using the calculated and measured spectroscopic parameters of bulk tellurite glass, a dual-wavelength pumping model was established to verify the feasibility of mid-infrared laser output in similar tellurite glass fiber. Experimental results support the assertion that the Er3+ doped tellurite glasses hold promise as a candidate laser gain medium for mid-infrared fiber laser systems. ? 2023 Elsevier Ltd and Techna Group S.r.l.
    Affiliations:(1) State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences (CAS), Shaanxi, Xi'an; 710119, China; (2) Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    Volume:50
    Issue:4
    Start Page:7168-7176
    DOI Link:10.1016/j.ceramint.2023.12.085
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20235215291178
欧美熟妇A片在线观看麻豆| 秋霞AV国产精品一区| 秋霞欧美在线| 一区二区三区国产精品| 黄色一级视频免费观看| 国产成人精品区一二三影院竹菊| 久久综合一区| 欧美精品一区在线| 国产原创在线播放| 黄色片网站在线观看| 成人AV导航| 日韩精品视频一区二区三区| 国产六区| 日韩久久影院| 熟妇网| 日本三级网站| 亚洲熟女久久| 成人毛片一区二区三区无码| 国产精品网址| 成人免费在线视频| 精品国产青草久久久久福利 | 国产亚洲一级| 久久久人人爽爆乳A片| 99热这里| 精品久久网站| 欧美H片在线观看| 夜夜操夜夜爽| 亚洲一区二区自拍| 日日干夜夜骑| 在线亚洲精品| 一级黄色片毛片| AV天堂久久| 欧美一级黄色片| 亚洲欧美精品| 91黑丝| 91九色视频在线| 欧美专区综合| 久久人妻一区二区三区| 少妇xxxx| a级片网站| 超碰100| 好屌色视频| 天天做夜夜爽| 动漫无码在线观看| 日本a级毛不卡| 色网在线| 色资源站| 在线视频一区二区| 国产精品一区二区高潮六一视频| 日韩国产免费| 日韩美女福利视频| 亚洲激情无码视频| 亚洲综合无码一区二区毛片| 国产日韩欧美在线| 九色影院| 亚网成色777777在线观看| 国产在线观看黄色| 97国产精品久久久| 五月婷婷综合网| 人人操摸99| 北条麻妃在线视频| 高清一区二区三区| 久久精品老司机| 无码黄色片免费| av在线www| 国产视频黄| 熟女天堂| 中文字幕一区二区三区不卡在线 | 一级A片黄女人高潮网站| 国产网红主播AV国内精品| 国产毛片在线视频| 久久久久国产精品夜夜夜夜夜| 国产a级免费| 欧美日韩精品国产| 中文字幕第99页| 91麻豆国产视频| 偷偷操不一样的久久| av电影资源| 伊人久久综合视频| 国产无码激情| 国产剧情自拍| 日韩欧美一区二区三区| 大香蕉国产| 色色毛片的网站| 日韩一二三四区| 人人爱操| 成人高清无码在线观看| 亚洲第一网站| av中文在线| 久久久久久精品一级毛片蜜| 成年人免费观看性爱视频| 国产AV久久久| 国产精品亚洲LV粉色| 91精品在线视频观看| 天天操夜夜爽| 亚洲精品久久无码77777| 婷婷综合色| 国产日韩精品人妻久久久久色欲网站| 全黄一级毛片免费| 中文字幕国产| 国产精品久久久久久久久免费看| 人人看人人摸人人干人人操| AV乱淫| 色男人色天堂| 黄色一区二区三区| 91精品国产高清91久久久久久| 一区在线视频| 午夜日韩无码| 国产一区在线视频| 国产中文字幕一区| 亚洲国产中文字幕| 国产2区| 国产又粗又大又黄| 一区二区三区四区| 中文字幕操逼| 色欲一区二区| 国产酒店3p| 天堂中文在线资源| 国产美女网站| www91com| 国产精品久久天堂噜噜噜| 中文字幕国产| 婷婷久久综合| 国产粉嫩| 失眠是什么原因引起的| 国产日批视频在线观看| 国产视频一区二区三区四区| 久久京东热| 国产毛多水多做爰| 亚洲AV日韩AV永久无码网站| 色视频一区二区三区| 久久最新| 久久精品99北条麻妃| 无码一区二区在线观看| 午夜激情视频在线| 污视频网站在线观看| 日韩无码影院| 国产探花视频在线观看| 欧美视频一区二区| 内射丰满少妇| 一区二区无码在线| 国产精品国产三级国产普通话一| 久久福利导航| 国产无码免费看| 一级黄色录像片| 热re99久久精品国产99热| 国产小视频在线播放| A片成人色色色网站在线播放| 久久久久久久久久一级| 欧美日韩一二| 国产精品99久久久久久白浆小说| 翔田千里性爱视频| 国产免费嫩草影院| 国产精品免费在线| 亚洲成人av在线观看| 无码人妻在线| 欧美A∨无码国产精品久久粉色| 久久久久国产精品免费免费搜索| 欧美一级特黄aaaaa片| 亚洲熟肉一区二区三区在线观看| 天天射天天爽| 国产电影一区二区三区| 国产免费视屏| 台湾精品久久久久久久| 日本熟妇HD| 电家庭影院午夜| 欧美老司机| 精品久久BBBBB精品人妻| 丁香五月天狠狠操| 免费av网站| 91丨九色丨熟女高潮| 欧美操大逼| 亚洲成av| 香蕉性爱视频| 视频在线无码| 国产成人无码精品亚洲| 一级做a爰片久久毛片A片冒白浆| 中文字幕视频免费| xxxx18一20岁hd| 青青草伊人| 真实乱视频国产免费观看| 久久瑟瑟| 黄色av网站免费看| 色av吧| 亚洲欧美国产一区二区 | 亚洲啪啪视频| 日韩欧美精品一区| 一区二区三区四区免费视频| 日本久久久久久| 久久精品福利视频| 日韩三级亚洲欧美激情| 无码人妻精品一区二区中文| 国产精品久久一区| 国产精品一区二区无码免费看片| 日韩一二三四区| 日韩视频一区二区三区| 苍井空无码在线观看| AV在线无码| 超碰在线导航| 国内久久精品视频| 性爱人人| 在线观看AV免费| 思思久久久| 我想免费观看在线电影视频| 日韩中文在线观看| 91无码人妻精品一区二区| 欧美日韩精品久久| 91麻豆精品视频| 日韩无码精品视频| 北条麻妃精品毛片AV| 一本一道久久a久久精品综合蜜臀| 国产AV不卡| 亚洲操逼视频| 日本东京热视频| 99久久亚洲精品视香蕉蕉v| 国产午夜免费视频| 草草影院ccyy国产日本第一页| 久久瑟瑟| 国产女人18毛片水真多14| 丰满女人又爽又紧又丰满| 在线观看色| 国产精品免费无遮挡无码永久视频| 污网站在线看| 欧美一级A片免费观看网站蜜桃| 国产激情一区| 国产丰满乱子伦无码| 久久精品国产亚洲AV麻豆图片| 亚洲熟女乱伦| 亚洲AV成人www新版精品久久| 国产福利在线观看| 日本阿v视频| 免费观看操逼| 污网站免费看| 成人高潮aa毛片免费| 中文字幕在线一区| 国模在线| 日本免费久久| 国产一级做a爱片毛片A片男| 性爱视频操| 毛片无码一区二区三区A片视频| 亚洲欧洲强奸乱伦| 日韩福利视频| 日韩精品一区二区三区中文字幕| 国产丰满乱子伦无码| 精品偷拍一区二区三区在线看| 无码aⅴ精品日本无码久久| 国产操b视频| 91AV视频在线观看| 国产成人精品久久二区二区| chinese偷拍一区二区三区| 精品人伦一区二区色婷婷| 无码操逼视频在线观看| 麻豆久久久| 亚洲av网站| 国产人人干| 日韩一级片在线观看| 精品一区二区在线播放| 人妻日韩中文字幕| 91成人片| 欧美伊人| 中字幕人妻一区二区三区| 毛片A片中文字幕在线视频| 91丨九色丨喷水| 成人黄色一级视频| 无码高清在线观看| 精品一区二区久久久久久无码| 国产精品激情偷乱一区二区∴| 91成人无码看片在线观看| 少妇高潮喷水| 欧美bbbwbbwbbwbbw| 欧美激情国产日韩精品一区18| 日韩高清无码性爱| 亚洲AV无一区二区三区久久| 午夜精品久久久久久| 美国AV在线播放| 天天干天天干天天干天天| 人人爱人人摸| 久久性爱电影网站| 成人H动漫精品一区二区无码| 欧美成人一区二区三区片免费| 亚洲av成人在线观看| 人人摸人人爱人人舔| 欧美日韩一| 黄色福利网站| 国产乱伦性爱| 91亚洲国产成人久久精品网站 | 91麻豆国产| 欧美a级黄片| 免费黄色大片网站| 五月天伊人| 亲子乱V一区二区三区免费看| 成人免费无遮挡无码黄漫视频| 亚洲精品一区二区成人影7788| 久久久久逼| 最新中文字幕在线视频| 国产成人精品亚洲男人的天堂| 免费观看AV| 水蜜桃久久| 最好看的中文视频最好的中文| 无码高清视频| 国产爆乳成91人在线播放| 亚洲狠狠干| 免费无码国产在线观看观| 亚洲高清无码一区| 丁香五月黄| 黄页在线观看| 91啪国自产最新91啪国自产| 亚洲人成在线观看| 影音先锋亚洲AV少妇熟女| 精品人妻熟女一区二区三区免费看| 91视频国产精品| 亚洲A级片| 国产精品成人在线观看| 无码人妻丰满熟妇片毛片| 欧美日一区二区三区| 日韩无码影片| 欧美熟妇在线观看| 99国产揄拍国产精品人妻蜜 | 久久99热婷婷精品一区| 天天操综合网| 欧洲无乱码一二三区| 国产九色| 天天射影院| 午夜情深深| 久久久久久91| 免费亚洲视频| 日韩高清一区二区| 小说区 综合区 图片区| WWW.操| 成人大香蕉| 毛片视频网| 欧美日韩黄| 特级做a爰片毛片免费69| 天天操天天日天天射| av无码一区二区| 精品九九九| A毛片网站| 国产精品无码av| 中文字字幕一区二区三区四区五区| 水多福利导航| 国产精品视频网| 玖草在线| 欧美一级日韩一级| 久久男人网| 玖玖在线| 欧美日韩在线观看视频| 免费的黄色网址| 99国产精品久久久久久久久久久| 一道本在线视频| 国产成人在线看| 一区二区www| 国产尤物在线| 中日韩欧美风情视频| 亚洲国产高清无码| 亚洲国产精品无码AV| 操一草| 天天操天天看| 欧美激情影院| 日本精品久久| 99国产揄拍国产精品人妻蜜| 欧美亚洲国产视频| 国产美女内射| 天天干视频| 亚洲精品国产精品乱码不66| 91麻豆精品秘密入口| 日本中文在线| 91综合网| 91九色国产| 日韩成人高清视频| 免费免费啪视频观看视频无码| 欧美抽插视频| av在线一区二区三区| 可以看av的网站| h片在线免费观看| 精品国产自在精品国产精小说| 国产男人天堂| 秋霞一区二区| 国产三级视频| 亚洲一级成人片| 一起草无码在线| 26AU欧美| 久久久久久久久久久高清熟女av粉嫩AV| 岛国激情一区二区三区| 国产东北女人做受av| 日韩无码第一页| 中文字幕一区在线观看| 国产精品精品| 最新中文字幕av| 国产妓女一级在线| 国产精品毛片AV| 久久久精品一区| 日本伊人久久| 日韩电影一区二区| 色婷婷综合久久| 秋霞午夜一区二区三区视频| 一区二区无码视频| 强奸乱伦视频第二页| 国产日本精品| 久草精品在线观看| 中文字幕乱码亚洲中文在线| 黄色网页在线观看| 亚洲无码内射| 一级a毛片免费观看久久精品| 黄色美女网站| 国产伦精品一区二区三区视频黑人| 亚洲天堂视频在线观看| 亚洲av无码一区二区三| 国产一级无码AV999毛片| A级重口毛片拳交视频| 国产美女内射| 我和亲妺妺乱的性视频| 黄色无遮挡| 黄片一区| 福利一区二区视频| 国产精选自拍| 偷偷操不一样的久久| 日韩乱伦一区| 四虎最新网址| 精品国产乱码久久久久电车痴汉久| 中国娇小与黑人巨大交| 26uuu成人网站| 日韩欧美国产视频| av一级毛片| 欧美视频一区二区| 午夜一区二区三区| 伊人久久一区| 亚洲一级电影| 久久久久国产一级毛片高清版| 免费下载黄片| 波多野结衣无码中文字幕| 日韩国产欧美| 中文字幕精品视频在线观看| 在线观看日韩视频| 国产无码一区在线观看| 国产精品视频网站| 91在线免费看片| 国产三级国产精品国产普男人| 国产欧美精品一区| 国产精品一区二区视频| 乱伦综合熟女| 精品黄色片| 亚洲熟女乱伦| 无码视频免费播放| 青青草视频在线免费观看| 亚洲日本中文字幕| 亚州淫乱网| 国产精品美女久久久久AV爽| 日韩免费视频一区二区| 亚洲精品久久无码77777| 日韩福利片| 国产一级a毛一级a免费看视频| 国产日韩在线| 亚洲二区在线| 91视频网国产| AV网站免费在线观看| 久久久久久久久影院| 自拍视频一区二区| 国产高清无码在线| 人人摸人人爱人人舔| 亚洲av网站| 特黄A片| 精品乱伦一区二区三区| AV无码专区亚洲AV毛片不卡| 亚洲夜夜操| 91在线精品视频| 日韩大片无码| 奇米狠狠| 亚洲国产AV一区二区| 国产精品久久久午夜夜伦鲁鲁| 成人精品水蜜桃| 四虎毛片| 综合国产| 国产成人精品无码| 麻豆自拍视频| 成人午夜sm精品久久久久久久| 亚洲五码在线| 白浆一区| 国产精品国产自产拍高清av水多| 成年人午夜视频| 亚洲熟妇无码AV| 欧美一区在线看| 日韩性爱在线观看| 波多野结衣中文字幕一区二区三区| 99热在线观看| av在线视屏| 国产激情久久| 精品自拍视频| 国产思思久久| 91视频导航| 综合网久久| 四虎精品在线观看| 国产嫩草一区二区三区在线观看| 色情乱伦av| AV综合| 中文字幕一区二区三区日韩精品| 91偷拍一区二区三区精品| 自拍偷拍av| 麻豆精品一区二区| 狂揉吃奶胸高潮视频免费| 久久久人妻| 欧美乱码精品一区二区| 操人网站| 91popny丨九色丨国产| 免费看一级毛片| 久久免费影院| 搡老熟女老女人一区二区| 99无码| 日韩精品欧美成人二区蜜臀| 亚洲图色AV| 国产成人精品三级麻豆| 麻豆久久久| 国产电影精品一区| 国产精品性爱视频| 高清无码免费看| 精品一区二区三区免费观看| 91久久婷婷| 在线一区| 国产女人水真多18毛片18精品视频| 免费毛片视频网站| 一级国产精品| 蜜桃av在线| free性丰满69性欧美| 国产av看片| 丰满少妇一级A片免费| 色婷婷综合久久| 浪漫樱花动漫在线观看| 色一情一区二区三区四区| 国产精品―色哟哟| 欧美午夜伦理| 在线成人性爱视频| 小俊┅┅快┅┅用力啊| 麻豆91视频| 一级片国产| 亚洲无遮挡| av高清无码| 日韩三级国产| 日本中文字幕三级片| 欧美日韩V| 潮喷视频在线| 欧美色图| 国产一级理论片| 一区二区久久| 亚洲无码免费| 99视频在线| 亚洲AV永久无码精品国产精| 国内精品视频在线观看| 欧美88| 九一免费视频| 国产精品一区在线播放| 91久久国产综合久久| 亚洲天堂无码一区| 无码视频在线播放| 一级特黄女人18毛片免费视频| 人人搞人人操人人插人人摸| 九七操逼啊| 国产无码强奸视频| 午夜精品久久99蜜桃的功能介绍| 高清无码视频在线看| 一区二区三区四区亚洲| 熟女av网址| 九九久久国产精品| 亚洲AV永久无码精品视色影视| 我不卡影院| 亚洲精品无码高潮喷水A片软| 精品香蕉99久久久久网站| 欧美亚洲一区二区三区| 国产精品一区一区三区| 亚洲精品亚洲人成人网裸体艺术| 久青草免费视频| A片看拳交| 精品二区在线观看| 三级片中文字幕在线观看| 成人精品视频在线| 最好看的2018中文在线观看| 亚洲成人91| 欧美一级免费| 欧美熟女乱伦| 成年人免费视频网站| 精品国产a| 久久综合凹凸国产一区二区三区| 亚洲蜜桃视频久久久| 婷婷五月天社区| 五月天一区二区| 人妻无码专区| 一级片在线观看| 日韩无码成人| 国产aV熟妇人震精品一品二区| 久久亚洲精品成人AV| 免费黄片毛片| xxxxx国产| 久久一级片| 亚洲av不卡| 国产AV电影网| 国产主播99| 91精品一区二区| 日韩激情网| 国产精品VIDEOSSEX久久发布| 操逼30分钟小视频| 亚洲黄色网址| 亚洲精品无码一区二区三区网雨| 91视频一区| 国产熟女视频| 男插女青青影院| 国产电影一区二区| 日韩精品免费一区二区三区竹菊| 殴美性生活黄色汇总| 亚洲福利网址| 国产在线观看一区二区| 精品国产一区二区三区不卡蜜臂| 久久精品老司机| 成人免费无码大片a毛片抽搐色欲 精品日韩人妻一区二区三中文字幕 | 中国一级黄| 伊人三区| 国产伦精品一区二区三区妓女区在线观看| 久久理论片| 久久久一| av亚洲欧洲日产国码无码苍井空 | 特级特黄AAAAAAAA片| 欧美性爱乱伦| 久久93| 天天干天天弄| 欧美色综合一区二区三区| 99精品免费观看| 国产一级做a爰片久久毛片男| 国产伦精品一区二区三区视频金莲| 美女黄网站| 伊人2222综合| 精品人妻无码一区二区三区淑枝| 日本无码精品| 日本少妇一区二区三区| 日韩av在线免费| 欧美日韩另类视频| 国产在线不卡| 超碰在线欧美| 国产91精品一区二区绿帽| 日韩亚洲一区二区| 久久久久久久亚洲| 成人精品视频| 亚洲无码精品在线播放| 亚色在线| 乱伦综合熟女| 永久免费不卡在线观看黄网站| 一区二区三区四区亚洲| 中国老熟女重囗味HDXX| 91久久久精品| 久久久精品人妻| 天天操狠狠操| 狼友视频网站| 亚洲图色AV| 亚洲AV无码成人精品区明星蜜乳| 高清无码一区二区三区| 日韩一级欧美一级| JlZZJlZZ亚洲日本少妇| 久久精品婷婷| 久久美女视频| 九九超碰| 老妇高潮潮喷到猛进猛| 日韩毛片视频| 蜜乳视频免费网站| 国产高清视频在线| 日本久久免费| 99久久人妻精品免费二区| 国产中文字幕在线| 各种姿势玩小处雌女txt视频| 成人久久大片91含羞草| 国产无码在线观看一区| 欧美一区三区| 国产日韩欧美亚洲| 久久水蜜桃| 五月丁香视频在线观看| 国产高清成人久久| 久久这里有精品| 视频精品一区二区| 亚洲精品一| 黄片免费观看视频| 欧美性爱另类人妻| 老熟妇一区二区三区啪啪| 一级黄色大片| 日韩黄色精品| 日韩三级片免费观看| 亚洲中文字幕在线观看| 秋霞午夜一区二区三区视频| 少妇一级淫片免费放| 国产a级免费| 久久久综合色| 精品一区二区在线观看| www夜夜操| 无码中文字幕乱码三区日本视频| 欧美在线视频免费观看| 久久午夜精品| 成人片黄网站色大片免费毛片| 少妇喷水| 国产欧美精品区一区二区三区| 视频在线无码| 亚洲AV成人精品一区二区三区| 伊人91| 97资源网| 视频一区二区无码| 不卡中文字幕| 性生生活大片又黄又| 久久99精品久久久久久水蜜桃| 欧美电影一区二区三区| 国产中文字幕一区| 亚洲尺码一区二区三区| 成人性生交大片免费看5| 天天干天天干天天干天天| 日韩精品在线视频| 中文字幕99| 九色在线视频| 欧美成人综合| 91国内揄拍国内精品对白| 91在线公开视频| 中文制服丝袜熟女AV亚洲| 欧美专区第一页| 国产精品福利在线| 99国产精品99久久久久久粉嫩| 99这里只有| 久久久国产无码精品| 无码精品A∨在线观看无| 中文字幕免费在线看线人动作大片| 亚洲欧洲一区二区| 国产另类视频| 黄色三级在线视频| 黄色无码在线观看| 久久九九精品99国产精品| 国产免费一级特黄录像| 中文字幕无码一区二区三区一本久| 亚洲精品国产一区二区三区四区在线| 黄色大片网址| A级a做爰片成人毛片入口| 超碰毛片| 久操精品在线| 欧美性爱一区| 污视频在线观看网站| 黄色电影毛片| 午夜毛片视频| 欧美亚洲黄片| 亚洲精品久久无码77777| 日韩两人性爱免费视频| AV无码免费在线观看| 精品人伦一区二区色婷婷| 大地资源中文在线观看官网免费 | 三级片中文字幕在线观看| 五月天天天操| 91在线公开视频| 欧美日韩偷拍视频| 婷婷五月天激情综合| 最新国产无码| 在线精品国产| 免费看又黄又无码的网站| 日本不卡视频| 国内精品久久久久久影视8| 粗大的内捧猛烈进出在线视频| 精品国产无码在线观看| 人人操人人摸人人干| 岛国无码AV| 欧美另类性爱| 国产一区二区电影| 日韩无码人妻| 国产网址在线观看| 免费一级黄色录像| 国产精品国产三级国产专播I12| 爽灬爽灬爽灬毛及A片| 久久99视频精品| 亚洲图片小说区| 粗大的内捧猛烈进出在线视频 | 欧美精品四区| 2023年中文字幕无码不卡| 久久久久99精品成人网站| 国产精品第四页| 国产又色又爽又刺激在线播放| 国产精品一级无码| 欧美操逼视频| 人妻体内射精一区二区| TUBE8| 91在线视频国产| av色综合| 成人网站视频在线观看| 一级片在线播放| 国色天香一区二区| 无码三级片视频| 无码人妻精品一区二区蜜桃网站| 国产一区二区在线视频| 国产精品久久久久久久久久久久久免费看| 国产欧美亚洲精品| 日韩操逼逼| 日本三级视频在线播放| 伊人黄色| 国产原创在线播放| 国产精品久久久久久久久久久久久免费看 | 亚洲精品三区| 精品亚洲国产成人AV制服丝袜| 免费免费啪视频观看视频无码| 国产成人精品自拍| 97精品视频| 91在线成人| 久久精品毛片| 欧美在线一区二区| 久久久精品一区二区三区| 精娱乐A片| 精品久久久久久久久久久国产字幕| 成人网站在线免费观看| 精灵梦叶罗丽第八季| 日韩经典在线| 躁躁躁日日躁| 亚洲国产AV片| 黑人一级片| 日躁夜躁狠狠躁2020| 三级精品2024| 成年人在线视频| 国产91视频| 好屌妞视频这里只有精品| 少妇熟女视频一区二区三区| AV在线毛片| 天天干天天操天天干| 97人妻人人揉人人躁人人| 337p粉嫩大胆色噜噜噜| 亚洲国产精品无码AV| 国产伦精品一区二区三区免费| 精品国产日韩亚洲| 色哟哟国产精品| 亚洲国产图片| 精品国产亚洲AV麻豆| 黄色片无码| 91极品国产| 亚洲国产精品无码观看久久| 黑人免费福利视频| 免费毛片在线| 思思久久主页| 欧美熟妇A片在线观看麻豆| 日日夜夜草| 国产午夜精品一区二区| 亚洲国产精品成人综合久久久| 国产黄色影院| 五月婷婷国产| 日韩欧美中文字幕一区二区| 一级毛片免费视频| 国产乱人伦| 国产美女毛片| 国产精品无码一区| 国产精品久久久久久亚洲色| 成人伊人网| 贵妇情欲按摩a片| 在线观看欧美日韩视频| 免费无码国产真人视频九色| 一级毛片免费播放视频| 国产四区| 国产一级a毛一级a在线播放| 青青草国拍2019| 中文无码一区| 国产性爱一级片| 线观看免费完整aaa| 麻豆久久久| 色视频成人在线观看免| 日本欧美国产| 日韩欧美国产精品| 久久久精品影视| 丁香色婷婷| 国产AV国产精品无套内谢下载| 午夜99| 成人无码视频在线观看| 欧美激情黄色一级片在线播放| 夜夜躁狠狠躁日日躁| 久久久伊人网| 国产激情无码AV毛片久久| 日韩在线视频免费观看| 国产思思久久| 亚洲小电影| 成人写真福利网| 96久久精品A片一区二区| 美日韩一区二区| 在线观看欧美日韩视频| 午夜精品久久久内射近拍高清| 无码内射视频| 一级片久久| 天天插天天狠天天透| 欧洲激情网| 911精品国产一区二区在线| 狠狠搞狠狠干| aaaa黄色激情| 一区二区三区亚洲| 亚洲精品99| 欧美簧片| 伊人影院亚洲| 免费国产一区| 午夜精品视频在线观看| 国产精品一区二区在线免费观看| 亚洲无码免费观看视频| 思思久久精品| 亚洲视频在线播放| 成人高清无码在线观看| 无码深夜AAA片在线观看| 国产69精品久久久久APP下载| 中文一级片| 国产免费一区| 日韩人妻一区二区三区| 老熟妇乱伦一区二区| 日韩黄色AV网站| 久久精品小视频| 欧美日韩一二三| 天天日天天干天天操| 亚洲欧美在线视频| 国产sm在线| 正面偷拍女厕36个美女嘘嘘| 色屁屁影院| 无码人妻精品一区二区蜜桃苍井空| 懂色中文一区二区在线播放| 日韩久久久久久久久久| 中文在线一区| 免费一区视频| 女人18片毛片90分钟| 精品福利在线| 成人毛片在线观看| 午夜一区二区三区| 国产第三页| 国产精品视频一区二区三区不卡| 一区二区三区高清在线观看| 强奸乱伦亚洲综合| 国产午夜精品一区| 欧美性爱第1页| 久久成人毛片| 国产在线拍揄自揄拍无码视频| 一本色道久久综合亚洲精品小说 | 国产99在线观看| 一区二区三区中文字幕| 亚洲无码二区| 色悠久久久| 欧美三级片在线视频|