尤物YW午夜国产精品视频,欧美亚洲日韩国产人成在线播放,97久久精品亚洲中文字幕无码,免费人成在线观看视频播放,无码精品日韩专区,亚洲AⅤ成人精品无码

2025

2025

  • Record 49 of

    Title:Effect of crack template structure morphology on electromagnetic shielding efficiency and visual performance of metal mesh optical window
    Author Full Names:Yang, Liqing(1); Guan, Yongmao(1,2); Gao, Fei(1); Wan, Rui(1); Wang, Pengfei(1)
    Source Title:Results in Engineering
    Language:English
    Document Type:Journal article (JA)
    Abstract:Electromagnetic shielding optical windows are crucial for protecting photoelectric detection and imaging systems. The template used in metal mesh fabrication significantly affects the electromagnetic shielding and visual performance of these windows. This study explores the preparation of crack templates with varying structural parameters by adjusting the precursor solution. Four different acrylic resin colloids were prepared using water, ethylene glycol, glycerol, and N-methylpyrrolidone (NMP), leading to the creation of four mask templates (DP1–DP4). The morphology and structural characteristics of the templates were analyzed using optical and laser confocal microscopy. DP1, made with water, exhibited the highest edge warping (1.5 μm), whereas DP4, using ethylene glycol and glycerol, showed the least warping (0.3 μm). Infrared spectroscopy revealed that hydrogen bonding in the solvents influenced crack formation, resulting in narrower cracks and smaller periods. Copper meshes were deposited using these templates, with DP1- and DP4-mesh showing average transmittances of 80.2 % and 84.5 %, respectively, across 380–800 nm. Electromagnetic shielding efficiency exceeded 15 dB between 1 and 18 GHz, with DP1-mesh reaching 29 dB at 1 GHz. However, DP1-mesh's larger lines reduced light transmittance, likely due to increased edge warping enhancing line connectivity and reducing breakage. ? 2025 The Authors
    Affiliations:(1) State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences (CAS), Xi'an; 710119, China; (2) Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2025
    Volume:25
    Article Number:103888
    DOI Link:10.1016/j.rineng.2024.103888
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20250317708234
  • Record 50 of

    Title:X-ray communication system with high-repetition-rate pulsed X-ray source and LYSO(Ce) and YAP(Ce) scintillators
    Author Full Names:Li, Yun(1,2); Su, Tong(1); Sheng, Lizhi(1); Zhang, Ruili(1); Chen, Junfeng(3); Wang, Bo(1); Qiang, Pengfei(1)
    Source Title:Nuclear Instruments and Methods in Physics Research, Section A: Accelerators, Spectrometers, Detectors and Associated Equipment
    Language:English
    Document Type:Journal article (JA)
    Abstract:X-ray communication offers significant advantages over traditional microwave methods due to its shorter wavelength and higher theoretical bandwidth, enabling efficient space communication and penetration through complex electromagnetic environments. However, current systems face limitations in X-ray emission modulation and high-precision timing detection. To meet the high-frequency transmission demands of space missions, we developed a pulsed X-ray emission source capable of high-frequency modulation. Additionally, we identified specific scintillators with distinct advantages for different transmission frequency ranges, allowing for performance optimization. Experimental results demonstrated a successful transmission rate of 10 MHz, validating the feasibility of MHz-frequency X-ray communication. ? 2024
    Affiliations:(1) State Key Laboratory of Transients 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) Shanghai Institute of Ceramics, Chinese Academy of Sciences, Shanghai; 201899, China
    Publication Year:2025
    Volume:1070
    Article Number:170022
    DOI Link:10.1016/j.nima.2024.170022
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20244617348898
  • Record 51 of

    Title:Fluorescence temperature dependent behaviors of Eu3+/Mn4+ co-doping cubic and hexagonal ZnO-TiO2 compounds: Application in high sensitive optical thermometers
    Author Full Names:Sun, Chengmei(1); Xu, Chengcheng(1); Ren, Wenzhen(2); Hu, Fengya(1); Yuan, Jun(1); Wang, Qingru(1); Xie, Yanru(1); Wang, Kai(1); Zhang, Dong(1)
    Source Title:Journal of Alloys and Compounds
    Language:English
    Document Type:Journal article (JA)
    Abstract:ZnTiO3:Eu3+,Mn4+ phosphors with hexagonal and cubic structure are synthesized by solvothermal method. The structure of ZnTiO3 depends on precursors and the annealing temperature. Inverse spinel Zn2TiO4 phase reveals the highest thermostability compared with cubic ZnTiO3 and hexagonal ZnTiO3 phases. The different phases of ZnTiO3 crystals exhibit different photoluminescence properties. The forbidden transition of 4A2g→2T2g for Mn4+ is observed in Zn2TiO4 and hexagonal ZnTiO3 (h-ZnTiO3) due to the decreased symmetry. The zero photon line (ZPL) assigned to 2Eg→4A2g transition of Mn4+ is absent in all type ZnTiO3 phases. A sharp emission peak at 714 nm assigned to ν6 (Stokes emission) mode of Mn4+ in h-ZnTiO3 is present when the temperature was below 270 K, and increases sharply in intensity with the temperature decreasing. The similar PL spectra of cubic ZnTiO3 and Zn2TiO4 co-doped with Eu3+ and Mn4+ show a wide emission band composed of Stokes and anti-Stokes modes. The calculated nephelauxetic parameter increases from 0.84 to 1.03 and 1.18 for Mn4+ in h-ZnTiO3, cubic ZnTiO3 and Zn2TiO4, respectively, indicating the covalency decreasing, which causes the red shift of ZPL in h-ZnTiO3. The Mn4+ emissions show stronger temperature dependence than that of Eu3+, especially for that in h-ZnTiO3 matrix. Based on the fluorescence intensity ratio between IEu3+ and IMn4+, the highest relative temperature sensitivity of 2.46 %K?1 is observed in cubic ZnTiO3 (c-ZnTiO3) and Zn2TiO4. Under the excitation at 550 nm, the highest relative sensitivity of 2.9 %K?1 is achieved in c- and h-ZnTiO3 mixed phases. ? 2024 Elsevier B.V.
    Affiliations:(1) School of Physical Science and Information Technology, Shandong Key Lab. of Optical Communication Science and Technology, Liaocheng University, Liaocheng; 252059, 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:2025
    Volume:1010
    Article Number:177374
    DOI Link:10.1016/j.jallcom.2024.177374
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20244617354185
  • Record 52 of

    Title:Infrared microlens formation on chalcogenide polymer surface via femtosecond laser pulse ablation
    Author Full Names:Liu, Feng(1); Li, Xianda(2); Yu, Longyuan(1); Zhang, Xiaomo(2); Li, Peng(1); Liu, Sheng(1); Zhang, Jiwei(1); Gan, Xuetao(1); Li, Weinan(2); Wang, Pengfei(2); Zhu, Xiangping(2); Zhao, Jianlin(1)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:In this study, we introduced micro-optical surface formation via femtosecond (fs) laser pulse scanning to chalcogenide polymer (ChP), a promising material for cost-effective infrared applications. Employing this method, we successfully fabricated a large-area poly(sulfur-random-(1,3-diisopropenylbenzene)) (S-r-DIB) microlens array (MLA) component. Each micro-concave spherical surface was crafted with a single fs laser pulse, serving as a micro-concave lens surface. We achieved a quasi-periodic MLA sample with over 2 × 105 micro-lenslets within a 10 mm × 10 mm footprint. Additionally, precise locating of laser pulse irradiation enabled us to create a hexagonal MLA with a filling factor over 37 %. Morphological investigations and imaging tests confirmed the adequate surface quality of the fabricated components, with its uniformity revealed by the virtual foci grid in near infrared region. To elucidate the forming conditions and mechanisms, we studied the evolution of surface morphology under various laser irradiation conditions. Laser induced damage thresholds of S70-r-DIB30 were experimentally determined for both 800 nm and 400 nm wavelengths under single- and multi-pulse irradiation scenarios. We identified the optimal fabrication fluence window as 115–205 mJ/cm2 with 800 nm single-pulse irradiation. The bandgap of the S70-r-DIB30 was estimated as 2.06 eV, and energy band analysis confirmed distinctions in ablation morphology. Furthermore, we investigated sub-surface morphology evolution using orthogonal ultrafast pump–probe imaging, revealing diversity compared to traditional inorganic and polymeric optical materials due to differing absorption and etching mechanisms. The elastic wave velocity of 3.2 km/s in this ChP and etching velocity of 0.7 μm/pulse were experimentally determined. These findings deepen our understanding of ChP material interaction with fs lasers, offering insights for potential applications such as surface engineering, substrate cutting, and micro-structure formation. ? 2024
    Affiliations:(1) Key Laboratory of Light Field Manipulation and Information Acquisition, Ministry of Industry and Information Technology, Shaanxi Key Laboratory of Optical Information Technology, Shaanxi Basic Discipline (Liquid Physics) Research Center, School of Physical Science and Technology, Northwestern Polytechnical University, Xi'an; 710129, 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:2025
    Volume:181
    Article Number:111679
    DOI Link:10.1016/j.optlastec.2024.111679
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20243516936355
  • Record 53 of

    Title:150 MHz, All-Polarization-Maintaining Fiber Integrated Figure-9 Femtosecond Laser
    Author Full Names:Cheng, Haihao(1,2); Zhang, Zhao(1,2); Hu, Xiaohong(1,2); Zhang, Ting(1,2); Pan, Ran(1,2); Jia, Jing(1,2); Wang, Yishan(1,2); Wu, Shun(3)
    Source Title:IEEE Photonics Technology Letters
    Language:English
    Document Type:Journal article (JA)
    Abstract:We accomplish a compact 150-MHz figure-9 Er: fiber laser through the use of a hybrid device of wavelength division multiplexer and phase shifter. By combining the time-independent rate equation and nonlinear Schr?dinger equation, evolution of the intracavity field towards stable mode locking state is presented. We further quantify the output characteristics of the 150-MHz figure-9 laser. Explicitly, 5.8-mW average power, center wavelength of 1561.2 nm and 3-dB spectral bandwidth of 29.2 nm are obtained. More importantly, an integrated root-mean-square relative intensity noise of 0.0016% [1 Hz, 1 MHz] and 75.8 fs timing jitter [100 Hz, 1 MHz] are measured at the fundamental repetition rate. Moreover, by referencing to a stable radio frequency, the fundamental repetition rate is locked with an in-loop relative instability of 2.78× 10-12 at 1-s gate time. ? 1989-2012 IEEE.
    Affiliations:(1) Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, State Key Laboratory of Transient Optics and Photonics, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Wuhan Institute of Technology, Hubei Key Laboratory of Optical Information and Pattern Recognition, Wuhan; 430205, China
    Publication Year:2025
    Volume:37
    Issue:3
    Start Page:165-168
    DOI Link:10.1109/LPT.2024.3523958
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20250417759813
  • Record 54 of

    Title:Bulk damage growth characteristics and ultrafast diagnosis of fluoride-containing phosphate glasses induced by 355-nm laser
    Author Full Names:Li, Shengwu(1,2); Jiang, Yong(3,4); Wan, Rui(1); Wang, Pengfei(1)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:To comprehensively reveal the influence regularity of different glass melting temperatures on the ultraviolet (UV) laser-induced damage resistance of fluoride-containing phosphate glasses, the initial bulk damage, damaged growth, and dynamic behaviors of both fundamental-frequency (1ω) absorptive and third-harmonic-frequency (3ω) transparent fluoride-containing phosphate glasses are explored utilizing the time-resolved pump–probe shadowgraph technique. A low-temperature (1000 °C) glass melting process resulted in an increase in the absorption coefficient at 355 nm and decrease in the optical bandgap for the 1ω absorptive glass. The produced 1ω absorptive glass was subjected to higher shock pressure and shock temperature on the rear surface after a single-pulse laser irradiation, and had a more serious filamentation damage accompanied by a funnel-shape morphology. With the subsequent multiples irradiation, the initial bulk damage area increased exponentially with a growth coefficient of 0.72. The corresponding exponential growth coefficient for the counterpart 1ω absorptive glass melted at a high temperature (1200 °C) was only 0.32 due to its slight initial bulk damage. In contrast, for the 3ω transparent glass, the high-temperature (1200 °C) melting process led to a larger initial bulk damage area and largest exponential growth coefficient of 0.91, 1.1 times that of the 3ω transparent glass melted at a low temperature (1000 °C). They exhibited wave-packed damaged morphologies extending from the rear surface into the glass body. The melting temperatures exhibited the opposite influence regularity for these two investigated fluoride-containing phosphate glasses. The high-temperature (1200 °C) melting process favored the improvement in UV laser-induced damage resistance of the 1ω absorptive glass, as evidenced by the higher UV laser-induced damage threshold and lower damage growth coefficient, while the low-temperature (1000 °C) melting process exerted similar effects on the 3ω transparent glass. ? 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) State Key Laboratory of Laser Interaction with Matter, Northwest Institute of Nuclear Technology, Shaanxi, Xi'an; 710024, China; (3) School of Science, Southwest University of Science and Technology, Mianyang; 621010, China; (4) Joint Laboratory for Extreme Conditions Matter Properties, Southwest University of Science and Technology, Mianyang; 621010, China
    Publication Year:2025
    Volume:182
    Article Number:112222
    DOI Link:10.1016/j.optlastec.2024.112222
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20244917469617
  • Record 55 of

    Title:Long-term repetition rate stabilization of soliton microcomb using optical closed-loop injection locking
    Author Full Names:Wang, Zhichuang(1,2); Shi, Lei(1,2); Hu, Xiaohong(1,2); Little, Brent E.(1); Chu, Sai T.(3); Wang, Weiqiang(4); Zhang, Wenfu(1,2)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:We demonstrate an optical closed-loop injection locking technology for the soliton microcomb repetition rate (frep) stabilization. Using the power of the ?1st comb line (?1st represents the first comb tooth on the left side of the pump laser) as an error signal, the pump laser frequency is auto-tuned to ensure frep locked at an optimal level. After injection locking for 2 h, the single-sideband (SSB) phase noise of the closed-loop locked frep decreases by 20 dB compared with the open-loop locked frep within the offset frequency range of 20 Hz to 30 kHz. After locking one and a half hours, the Allan deviation of the closed-loop locked frep reaches 1.8 × 10?13@0.1 s, which improves by three orders of magnitude. The experimental results prove the feasibility of the optical closed-loop injection technology for long-term frep stabilization. The proposed scheme has excellent locking performance, simple structure and low cost, which has the potential application for stable microwave generation, precision ranging, etc. ? 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, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Department of Physics, City University of Hong Kong, Hong Kong; (4) School of Electronic Information and Artificial Intelligence, Shaanxi University of Science and Technology, Xi’ an; 710021, China
    Publication Year:2025
    Volume:180
    Article Number:111549
    DOI Link:10.1016/j.optlastec.2024.111549
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20243216803766
  • Record 56 of

    Title:A cascade SPR sensor based on Ag/Au coated coreless optical fiber for RI and pH measurement
    Author Full Names:Hu, Linchuan(1); Li, Jianshe(1); Yin, Zhiyong(1); Zhang, Zhibing(1); Li, Hongwei(1); Li, Shuguang(1); Wang, Peng(2); Du, Huijing(1); Wang, Ruiduo(3)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:Due to the restriction of resonant wavelength, the detection range of traditional two-parameter sensors is greatly limited. To solve this problem, a cascade SPR sensor with Ag/Au coating is proposed to measure refractive index (RI) and pH value. In this paper, coreless optical fiber is used as the sensor probe, and Ag/Au are coated on its surface by a magnetron sputtering method. The two sensing channels of this cascade sensor are independent of each other and have a wide parameter detection range. The effects of sensor length and coating time on the performance of the sensor were investigated, and the optimal sensor length and coating time were determined. The experimental results show that the maximum refractive index sensitivity is 3888.6 nm /RIU in the RI range of 1.333–1.385, and the maximum pH sensitivity is 38.01 nm/pH in the pH range of 3.15–8.86. The sensor has the advantages of strong stability and high integration and has a good application prospect in the fields of biosensing and environmental detection. ? 2024
    Affiliations:(1) State Key Laboratory of Metastable Materials Science & Technology and Key Laboratory for Microstructural Material Physics of Hebei Province, School of Science, Yanshan University, Qinhuangdao; 066004, China; (2) State Key Laboratory of Metastable Materials Science and Technology, Yanshan University, Qinhuangdao; 066004, China; (3) State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences (CAS), Xi'an; 710119, China
    Publication Year:2025
    Volume:180
    Article Number:111452
    DOI Link:10.1016/j.optlastec.2024.111452
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20242816693160
  • Record 57 of

    Title:Metasurface Polarization Optics: Phase Manipulation for Arbitrary Polarization Conversion Condition
    Author Full Names:Li, Siqi(1); Chen, Chen(2); Wang, Guoxi(1,3); Ge, Suyang(1,3); Zhao, Jiaqi(1,3); Ming, Xianshun(1); Zhao, Wei(1,3); Li, Tao(2); Zhang, Wenfu(1,3)
    Source Title:Physical Review Letters
    Language:English
    Document Type:Journal article (JA)
    Abstract:Metasurface polarization optics have attracted considerable attention due to their ability to manipulate independently the wave fronts of different polarization channels with subwavelength scale. Previous methods mainly focused on the condition of complete polarization conversion, restricting the application range of metasurface polarization multiplexing. Here, we proposed a generalized framework of phase manipulation for the metasurface polarization optics, which can realize independent phase control and arbitrary energy distribution of different polarization channels for the arbitrary polarization conversion efficiency. Based on this principle, we experimentally demonstrate tripolarization-channel wave-front control for the arbitrary polarization state (elliptical, circular, and linear). The arbitrary energy distribution of different polarization channels has been achieved via varying the polarization conversion efficiency. The proposed framework significantly improves the performance of metasurface in the polarization multiplexing and energy distribution, and expands the application scope of metasurface in the polarization optics. ? 2025 American Physical Society.
    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) National Laboratory of Solid State Microstructures, Key Laboratory of Intelligent Optical Sensing and Manipulations, Jiangsu Key Laboratory of Artificial Functional Materials, College of Engineering and Applied Sciences, Nanjing University, Nanjing; 210093, China; (3) University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2025
    Volume:134
    Issue:2
    Article Number:023803
    DOI Link:10.1103/PhysRevLett.134.023803
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20250317701285
  • Record 58 of

    Title:Enhancing Optical Sectioning in Structured Illumination Microscopy With Axially Confined Fringe Modulation
    Author Full Names:Li, Jiaoyue(1,2,3); Chen, Xiaofei(1,2,3); Wen, Kai(1,2,3); An, Sha(1,2,3); Zheng, Juanjuan(1,2,3); Ma, Ying(1,2,3); Wang, Xiaofang(1,2,3); Dan, Dan(4); Yao, Baoli(4); Nienhaus, G. Ulrich(5,6,7,8); Gao, Peng(1,2,3)
    Source Title:Laser and Photonics Reviews
    Language:English
    Document Type:Article in Press
    Abstract:Optical sectioning structured illumination microscopy (OS-SIM) is a fast, minimally invasive 3D imaging technique that has found widespread application in the biosciences. It is based on sample illumination with several illumination fringe patterns featuring distinct mutual phase shifts, from which an axially sectioned image is reconstructed. Its optical sectioning capability is commonly attributed to the attenuation of the fringe modulation of light collected from planes displaced from the focal plane. However, in addition to this effect, which is governed solely by the detection optics, optical sectioning can be further enhanced by confining the fringe modulation axially via partially coherent illumination (PCI). To establish guidelines for optimal illumination field shaping, both theoretically and experimentally are investigated, the optical sectioning strength of OS-SIM upon variation of the two key parameters, modulation period and angular spectrum of the incident illumination. By using PCI with OS-SIM, nearly fivefold and 1.4-fold enhanced axial resolution have achieved for scattering (non-fluorescent) and fluorescent samples, respectively. This work elucidates the optical sectioning mechanism of OS-SIM and provides a perspective for further optimization. ? 2025 Wiley-VCH GmbH.
    Affiliations:(1) School of Physics, Xi'dian University, Xi'an; 710071, China; (2) Key Laboratory of Optoelectronic Perception of Complex Environment, Ministry of Education, Xi'an; 710071, China; (3) Engineering Research Center of Information Nanomaterials, Universities of Shaanxi Province, Xi'an; 710071, China; (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; (5) Institute of Applied Physics, Karlsruhe Institute of Technology, Karlsruhe; 76049, Germany; (6) Institute of Nanotechnology, Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen; 76021, Germany; (7) Institute of Biological and Chemical Systems, Karlsruhe Institute of Technology, Eggenstein-Leopoldshafen; 76021, Germany; (8) Department of Physics, University of Illinois at Urbana-Champaign, Urbana; IL; 61801, United States
    Publication Year:2025
    DOI Link:10.1002/lpor.202401697
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20250517770273
  • Record 59 of

    Title:Soliton patterns recognition and searching from a 2 μm intelligent mode-locked fiber laser agent
    Author Full Names:Yao, Tianchen(1,2); Qi, Liwen(1); Zheng, Fangfang(1); Zhou, Wei(1,2); Kang, Hui(1,2); Zhu, Qiang(1,2); Song, Xiaozhao(1,2); Liu, Guangmiao(1,2); Xu, Shengzhou(1); Zhang, Qianwei(1); Wang, Haotian(1); Wang, Fei(2); Wang, Yishan(3); Jia, Baohua(4); Shen, Deyuan(1,2)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:The negative dispersion of silica fibers near 2 μm wavelength leads to formations of attractive soliton-patterns in Thulium-doped mode-locked fiber lasers (TDMLFL), including single-solitons(SS), bound-solitons(BS), multi-solitons(MS), soliton molecules(SM), as well as noise-like pulses(NLP). However, the current manual or physically controlled methods cannot accurately identify and quickly adjust the diverse solitons. Here, we successfully realized the fine identification and automatic searching of continuous waves, Q-switching, noise-like pulses, multi-solitons, and single-solitons by constructing a genetic algorithm based self-tuning pump power and time-spectrum feedback agent in a TDMLFL. The searched SS have a duration of 1.269 ps, a central wavelength of 1966 nm and a typical Kelly-sideband spectrum. The minimum consuming time of globally finding a single-soliton is ~40 mins, and the corresponding recovery-time is ~2 mins. To the best of our knowledge, this is the first time that an intelligent searching and recognition of single soliton in 2 μm TDMLFL and also the first report of soliton-patterns fully intelligent identification and searching without prior parameters in soliton mode locked fiber lasers. ? 2024 Elsevier Ltd
    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) 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) The Australian Research Council (ARC) Industrial Transformation Training Centre in Surface Engineering for Advanced Materials (SEAM) RMIT University, Melbourne; VIC; 3000, Australia
    Publication Year:2025
    Volume:182
    Article Number:112125
    DOI Link:10.1016/j.optlastec.2024.112125
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20244717376605
  • Record 60 of

    Title:Candle soot nanoparticles covered femtosecond laser-induced graphene toward multifunctional wooden houses
    Author Full Names:Yu, Haonan(1); Yin, Kai(1,2); Wang, Lingxiao(1); Song, Xinghao(1); Yang, Pengyu(1); Wu, Tingni(1); Huang, Yin(1); Li, Xun(3); Arnusch, Christopher J.(4)
    Source Title:Carbon
    Language:English
    Document Type:Journal article (JA)
    Abstract:Laser-induced graphene (LIG) is an innovative material that can be used in the construction of smart wood houses due to its high electrical and thermal conductivity. However, potential practical challenges such as fire hazards, and the complexity of daily cleaning are limitations in such an application. In this study, we utilized femtosecond laser direct writing technology to create femtosecond laser-induced graphene (FLIG) on flame retardant cork. The FLIG surface was then coated with multi-scale candle soot particles to incorporate carbon black (CB-FLIG) superhydrophobic surface properties. Here we demonstrate CB-FLIG as a raw material for electronic components in multifunctional wooden houses. The infrared emissivity of the CB-FLIG surface was as high as 97.2 % and the electric heating performance was good. As such, it can be used as an electric heater in the winter, and we achieved room temperature control at a comfortable 24.9 °C with 4 V voltage in a model house. Also, the water contact angle was 151.2°, giving CB-FLIG self-cleaning properties. Ultimately, we demonstrate the application of CB-FLIG in the field of smart home components such as electrical wiring, electric heaters, fire protection, and self-cleaning, increasing functionality while reducing the need for routine maintenance. This study lays a robust foundation for state-of-the-art devices within smart timber houses and significantly propels the development of versatile, interconnected wooden dwellings. ? 2024 Elsevier Ltd
    Affiliations:(1) Hunan Key Laboratory of Nanophotonics and Devices, School of Physics, Central South University, Changsha; 410083, China; (2) State Key Laboratory of Precision Manufacturing for Extreme Service Performance, College of Mechanical and Electrical Engineering, Central South University, Changsha; 410083, China; (3) State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics of CAS, Xi'an; 710119, China; (4) Department of Desalination and Water Treatment, Zuckerberg Institute for Water Research, The Jacob Blaustein Institutes for Desert Research, Ben-Gurion University of the Negev, Sede-Boqer Campus, Midreshet Ben-Gurion, 84990, Israel
    Publication Year:2025
    Volume:233
    Article Number:119853
    DOI Link:10.1016/j.carbon.2024.119853
    數(shù)據(jù)庫(kù)ID(收錄號(hào)):20244817447614
人人综合五月人人婷婷| 五月天停停日日| 97色天堂| 亚洲精品五十一区| 永久天堂日本| www.色9| 久久精品无码一区| a网站免费观看| 中文字幕日产A片在线看| 天天天天天天天操| 一区视频网站| 久久丁香| 亚洲精品99| 激情婷婷五月久久| 奇米影视在线视频| 99热网站| 99热在线观看这里只有精品| 五月天婷婷免费| 日本不卡高字幕在线2019| 99免费热视频| 婷婷色在线| 久久九九热38| 超碰人妻在线| 开心五月深爱婷婷| 色五月丁香总合网| 色婷婷影视99| 色5月婷婷| 九九热手机在线视频| 五月天另类图片区99| 五月丁香婷婷六月| 婷婷 月 丁香| 亚洲综合在线伊人婷| 色欲久久99精品久久久久久| 97色天堂| 色情久久久| 香蕉国产2013| 天天射天天操天天干| 色综合丁香婷婷| 色情五月天se| 婷婷九九| 亚洲在线网站| 色色婷婷五月| 亚洲中文乱字字幕在线永久| 丁香婷婷综合五月天| 91av无码| 99热这里| 九热免费视频| 欧洲亚洲激情五月天在线| 91AV婷婷| 艹色18p| 五月天亭亭俺也| 九九激情视频| 日本女va| 日亚二欧美| 北京熟妇搡BBBB搡BBBB| www.五月婷婷久久.com| 夜夜做夜夜愛| 天天人人综合| 成人永久免费视频在线观看| 五月婷婷色欲| 久久五月综合| 99riAv1国产在线观看| 婷婷五月综合在线视频| 久久综合中文| www:99热视频| 久久久激情| 一区二区乱码视频| 婷婷五月天堂一本在线| 五月婷婷开心深| 亚洲另类毛片| 97夫妻超碰| 五月丁香啪啪婷婷| 99A片| 丁香六月亚洲| 99小视频| 久久98热re| 九月丁香八月婷婷加勒比| 丁香九月婷| 人人摸人人搞| 九九操综合网| 九九成人精品免费视频| 激情视频婷婷五月花| 人操人人| 狠狠久久婷五月综合色| 婷婷色婷婷| 国产性爱一级| 色在线视频网2025| 五月婷婷视频ab| www久久99com| 欧美综合五月丁香六月婷| 色天使久久综合| 成人午夜天| 日韩久热| 国产美女无遮挡裸体毛片A片| 婷婷五月丁香色情| 丁香六月色香蕉视频| 日韩色久| 日本一级一片免费视频| 婷婷伊人綜合| 91狼友视频在线观看| 日韩一区二区A片免费观看| 五月天婷婷免费| 日本五月天激情| 欧美亚洲婷婷五月| 五月天激情小说电影| 色五月婷婷色| 99热综合在线| 老妇操B| 日本偷拍九九九| 无码人妻精品一区二区蜜桃色欲 | 婷婷丁香六月激情综合| 9.1综合网| 久久丝袜婷婷| 婷婷影院欧美| 人人操超碰| 任你草| 久热这里| 九九九九国产| 操逼六区| 无人区码一码二码三码医生系列| 色色色色色综合| 国产精品五月天婷婷| 深爱五月中文字幕| 丁香婷婷射| 激情五月黄色小说| 成人五月天色天堂| 亚洲欧洲自拍图片专区五月天| 亚洲综合网区| 99re这里只有精品99| 久久激情五月婷婷| 99re66热这里只有精品| 丁香五月天欧美成人| 色五月婷婷基地| 五月丁香自拍| 67194中文字幕| 日本乱论99| 色五月97| 五月丁香啪。| 综合九九久久| 九月丁香八月婷婷久久综合久97| 婷婷五月在线| www久久久久久| 亚洲天堂玖玖| 殴美97色| 婷婷五月无码| 色九九九九| WWW.久久久久久久久久久久久| 99热99日天天干| 爱操天堂| 国产原创视频91九色| 99久操视频| 激情婷婷丁香| 91热久| 久久日韩婷婷五月| 久碰综合| 婷婷大乡焦噜噜| 98永久精品| 7777精品伊人久久久大香线蕉最新版| 1024亚洲| 日韩日比视频| 五月婷在线影院| 97人人搞| 婷婷久久综合| 激情五月图| 再次出发二| 人人舔人人色人人高潮| 久久九九99亚洲国产久精综合| 亚洲五月天婷婷综合| 人人人va亚洲视频在线| 成人丁香婷婷| 天天干天天干天天干| 激情五月天综合网| 色九区| 久久久久久久人妻| 婷婷久久综合| 日美三级| 伊人婷婷五月天av| 7超碰自拍| 九九性视频| 人妻射精AV| 日本婷婷丁香五月| 丁香五月婷婷88在线| 亚洲色vA| 婷婷五月婷婷| 超碰色综合| 超碰99在线| 国产成人AV| 婷婷五月丁香亚洲| 婷婷久久综合久色| 五月丁香久久丝袜啪啪| 五月婷婷之综合激情| 五月丁香啪| 日本美女上人| 国产午夜成人AV在线播放| caop视频| 91久久免费| 99综合一区| 成人五月天婷婷| oVV4WIB3vFi8D| 激情综合六月| 天天日夜夜| 超碰成人电影| 三年中文免费视频大全| 欧美激情五月天在线观看| 色欲婷婷夜夜| 这里只有精品在线播放| 婷婷五月天在线观看第二页| 99超级碰碰| 五月天婷婷小说| 色丁香五月婷婷| 97人人操人人拍| 97极品在线| 婷婷丁香色五月亚洲| 丁香五月婷婷成人综合| 久久久精品色色色| 超碰在线精品| 欧美电影在线观看| 大香蕉欧美在线| 国产成人网站在线观看| 天天久久综合| 五月婷婷之婷婷| 2025天天日爽| 99成人| 婷婷色网址| 久碰久操| 四色 爱 婷婷 精品 亚洲 五月天| 欧美激情综合色综合| 五月天激情小说网| 涩涩涩五月天| 日韩精品在线观看9| 欧美大香蕉视频| 激情婷婷内射| 婷婷五月天激情基地| 五月天婷婷AV| 亚洲妇女熟BBW| 伊人久久综合| 99在线观看视频免费| 婷婷综合伊人丁香| 色色色婷婷五月| 欧美69久成人做爰视频| 色婷婷四色| 亭亭玉立国色天香| www,99热| 九九精品热| 日韩国产AV播放| 无码人妻激情| 五月婷婷激情中心| 色婷婷9| 99在线精品免费视频| 99啪视频在线观看| 狠狠香婷婷五月| 免费五月婷婷网| 国产91视频| 99在线视频观看| 日本啪啪网| 99免费视频精品| 免费亚洲婷婷中文字幕| 狠狠噪| 欧美激情综合色综合啪啪五月| 婷婷五六日| 丁香五月社区| 亚洲精品又粗又大又爽A片| 综合九九久久| 一區四區歐美日韓| 超碰在线超碰| 欧美色片中文字幕久久久久| 色婷婷av在线| 99国产这里只有精品| 91久久久久久久| 五月婷婷先锋| www.狠狠操.co m| 99在线观看精品视频| 九九热视频在线观看| 丁香五月婷婷久久久| 人妻久久久久久久久妻久久久久久久久| 国产精品婷婷午夜在线观看| 26uuu精品一区二区| 丁香五月天操B| 婷婷中文无码| 欧美啄木乌丝袜人妻系列| www.色婷婷| 91窝窝| 激情五月丁香综合蜜桃| 五月婷婷成人| 热日韩欧美| 色丁香五月天射婷婷爱婷婷| 99re8在这里只有精品| 亚洲熟妇无码乱子AV电影| 五月天婷婷丁香花| 开心五月激情站| 久久久ww| 狠狠婷婷日韩| 丁香六月天婷婷在线| 五月婷婷五月天| 激情五月天婷婷播播久久综合91| 五月激情视频| av狠狠操| 欧洲色色| 我要射综合| 狼人狠狠操| www.sezonghe| 欧美日韩中文国产一区发布| 99爱99操| av操一操| 久久人妻精品| 另类视频综合| 俺去也婷婷| 五月J香蕉婷婷| 婷婷六月丁香激情| 我去色色网五雨天| 色婷婷五月综合色婷婷| 九九热这里只有精品9| 五月婷婷色| 色五月色五天色情网址| 五月丁香综合精品| 激情www| 色婷婷综合成人| 婷婷五月丁综合| 青青草国产亚洲精品久久| 久久精品99久久| 亚洲五月色| 97人人射| 无码九九| 亚洲av日韩无码| 丁香五月天激情四射网络不好 | 欧美99热| 丁香五月婷婷五月天| 91热视频| www·五月天| 五月丁香婷婷综合网| 99超级碰碰| 五月天综合婷婷| 无码91中文字幕| 天天日,天天射,天天插| 九九99精品视频在线观看| 狠狠色婷婷7777久综合| 五月天婷婷人妻| 国产 码在线成人网站| 久月丁香爱婷婷综合| 久久久久久久97| 激情综合99| 亚洲色五月婷婷| 天天久久婷婷| 五月婷婷丁香狠狠撸久久| 婷婷五月天社区| 在线,国产,色,热视频| 成人短视频在线| 五月丁香另类图片| 欧美视频五区| 色私五月婷婷| 久久亚洲天堂| 激情五月天啪啪| 激情五月婷婷五月| 九月大香蕉| 丁香婷婷六月在线资源观看| 日本不卡高字幕在线2019| 人人草成人视频| 亚洲天堂热| 久久婷婷成人| 97色97干| 九九久久99精品免费观看www| 第四色大香蕉| 97在线刺激| 大地资源色婷婷视频在线 | 操比激情五月| dingxiangtingtingliuyue| .青娱乐天天操B| 五月婷婷视频啪啪美女| 成人中文网| 亚洲色五月天在线| 少妇性BBB搡BBB爽爽爽视頻 | 五月丁香啪啪啪| 色香久久| 精品人妻在线| 久久伊人大香蕉| 免费AV播放| 五月开心婷婷极品激情| 岛国AV网| 色狠狠999综合网| 亚洲精品白浆高清久久久久久| 再次出发二| 青草青草视频2免费观看| 99热费观看| 色婷婷先锋| 国产亚洲AV人片在线| 狠狠色噜噜狠狠| 91seAV| 人人草开心五月天| 91丨九色丨老农村| 97碰人人操| 97干欧美| 五月婷婷啪啪| 天天色五月| 色色色色色色色色色影院| 丁香婷婷五色月| 新激情婷婷| 丁香六月无码播放| 国产亚洲色婷婷久久99精品9j| 丁香六月成人| 丁香五月婷婷五月| 99乱视频| 婷婷色播色五月五色五月天色妇| 亚洲第一综合| 国产热精品| 色婷婷精| 五月花婷婷| www.综合久久.com| 色五月综合激情| 思思热99er在线视频| 狠狠操狠狠爱| 五月婷婷啪啪啪啪| 成人综合视频在线| 久久这里只精品| 午夜青草资源| 天天色五月婷婷91久久久久久久| 日日撸夜夜操| 五月天啪啪视频| 亚洲视频一区| 99热99热不卡| 九色无码| 9+1视频网址| 2025最新亚洲激情在线| 久久婷五月影院| 人人色婷婷| 婷婷99狠狠躁天天| 欧美槡BBBB槡BBB少妇| 欧美日本一区二区三区| 五月丁香毛片| 337p大胆噜噜噜噜噜91Av| 五月丁香五月丁香| 婷婷丁香五月社区亚洲| 五月婷婷开心中文字幕| 久久久91| 色婷婷成人做爰A片免费看网站 | 日本熟女一区二区| 4399在线观看免费高清黄色视频| 中文字幕成人| 五月开心啪啪| enecarbon-materials.com污K127封锁请涟系@wip1688 | 日本大逼91| 久久人人九九| 桔色成人官方网站| 怡红院成人AV| 狠狠草在线观看| 99色看| 97干在线看| 天天精品视频免费观看| 99热这里有精品24| av成人在线播放| 国产午夜一区二区三区| 五月天激情网页| 婷婷色片| 免费无码毛片一区二区A片| 五月天激情啪啪| 182TV亚洲| 极品人妻VIDEOSSS人妻| 日本色狠狠| 狼友超碰| 亚洲精久久| 99操九九网| 9热在线观看| 色色影院aaaav| 国产亚洲av片| 五月丁香久久| 天天日天天草| www色婷婷久久综合久色 | 国产精品成人在线| 丁香五月之久操视频| www.97碰碰com| 六月婷婷日| 九九色院| 色色五月婷婷| www.五月天| 五月婷婷av| 激情五月伊人婷婷| 色欧美日| 禁欲电影完整版在线播放| 亚洲色频| 六月丁香婷婷色综合| 天天干天天曰天天射| 少妇高潮呻吟A片免费看软件| 五月天成人小说| 性爱在线播放av| 美腿丝袜AV天堂网| 日产精品一线二线三线芒果| JAVAPARSAE人妻XXX| xxxx五月| 超碰93在线观看| 99视频久久免费视频| 大香蕉综合视频在线| 综合性爱网| 婷婷精品在线| 五月婷网| 玖玖九九9999在线观看视频精品| 色五月婷婷丁香五月| 丁香五月婷婷影院| 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 | 五月婷婷色五月| 国产永久一二一起草| 中文字幕无码成人电影| 97碰碰碰免费公开在线视频| 成全二人免费| 国模淫穴色图| 色五月天天在线观看资源站| 国产亚洲色婷婷久久99精品91 www.riverspirits.org www.hnnun.com www.changh | 激情婷婷五月综合| 精品香蕉99久久久久网站| 口述两男一女3p经历| 天天撸夜夜爽| 91精品久久久久久综合五月天| 国产人人操| 99热在线观看| 婷婷的99视频网站| 激情综合五月开心狠狠| www.日韩艹| 国产激情在线| AV大片在线观看| 图片区 小说区 区 亚洲五月| 激情视频综合| 午夜做爱影院| 亚洲综合色丁香五月天| 久久黄A片| 伊人色五月| 五月婷婷 婷婷五月 一区二区 久久久 | 91精品91久久久久77777| 日韩AV大全| 中文人妻AV久久人妻18| 久久 视频这里只有精总| bbwcuckold精品熟妇| 开心五月婷婷婷美女| 婷婷不卡基地| 少妇人妻偷人精品无码视频新浪| 久久精品99久久| 日日影院 | 国产精品久久..4399| 青青草成人网| 常久最新免费的色吊丝| 色欲丁香久久| 久久五月天激情美女| 色色色色色五月丁香| 奇米色大香蕉| 丁香五月天久久| 五月丁香六月激情综合| 亚洲永久免费| 国产.亚洲.欧洲视频在线| 综合网视频| 五月丁香色婷婷基地| 99久久国产成人精品| 五月丁香香蕉| 一区视频网站| 99热99美国在线观看| 九九成年视频| 99人人爽| 在线中文AV| 伊人在线视频| 五月天激情综合| 99操视频| 婷婷激情九月| 99热精品中文字幕| 99热这里只有免费精品| 五月天激情婷婷丁香| 五月天综合缴情网网站0| 久久久久这里都是精品| 猫咪伊人久久| 青草激情综合| 婷婷五月综合激情免费视频| 深爱激情五月天婷婷网| 国产热精品| 丁香五月婷婷六月婷| 无码网| 婷婷五月成人色综合| 五月色综合| 亚洲综合久| 97精品自拍| 五月丁香六月激情综合| 全高清无码视頻| 日韩AV在线免费观看| 91日婷婷在线| 精品9l九九九九九77777| 九色亚洲| 婷婷香蕉精品| 超碰熟女农村在线69| 久久这里有精品99| 精品婷婷五| 99热最新| 欧美日本VA| 婷婷五月丁香五月| 激情综合5| 天天插天天玩天天干| 婷婷丁五月| 性爱动图国产麻豆一区二区三区 | 久99| 亚洲综合网区| 五月天婷a在线| 狠狠狠婷婷五月综合| 婷婷激情五月天网站| 激情深愛五月視頻| 天天噜天天爱| 九九爱看亚洲| 99热最新网址| 五月婷婷综合久久| 色欲一二三| 五月婷婷视频| 久久五月婷婷丁香| 色~性~乱~伦~噜| a网站免费观看| 深爱激情综合| 五月色综合| 久久婷婷五月综合色区| 五月婷婷激情啪啪| 东北黄色一级| 啪色综合| 欧美色图45678| 丁香五月AV在线| www婷婷亚洲| 丁香婷婷久久老熟女综合网| 婷婷六月激情综合| www.天天干| 91丨九色丨丰满人妖| 亚洲中文字幕AV| 国产亚洲精品AAAAAAA片 | 亚洲精品字幕| 大香蕉 婷婷| 久久爱综合| 亚洲一区二区无遮挡A片| 婷婷五月电影| 欧美成性色| 69午夜成人影片| 丁香五月婷婷俺也要去| 日日干天天| 久操大| 丁香五月天电影| 人人人操 超碰| 久久婷婷青青草| 六月丁香天堂| 精品人人操| 99热日韩这里只有精品| 五月丁香五月天现场视频| 五月伊人婷婷| 2020日日干| 九九婷婷网五月天| 激情人妻蜜夜系列区| 婷婷六月丁综合| 一起草无码| 亚洲视频a| 久热这里只有精品66| www天天色天天射| 久综合| 亚洲爆乳无码精品AAA片蜜桃| 99欧美精品99日本精品| 六月丁香激情| 91狠狠色丁香婷婷综合久久| 欧爱综合视频| 久草热在线视频| 五月婷在线观看| 99热超碰| www:99热视频| 久操操| 开心五月综合激情综合五月| 色婷婷久久综合久色综| 日韩成人综合网| 91碰碰碰| 东北黄色一级| 狠狠色婷婷| 欧洲亚洲激情五月天在线| 人人摸人人| 五月花激情| 4399啪啪视频| 九九99热| 九九热这里都是精品6| 99爱在线视频观看| 色色丁香婷婷| 五月天久久色| 欧美色97| 激情综合网之激情五月| 五月婷婷激情综合网 | 日日夜夜狠狠婷婷色| 婷婷五月天激情影片| 日本人も中国人も汉字を| 丁香五月婷婷啪啪| 亚洲天堂色| 欧洲亚洲免费视频9| 99热久久最新地址| 女BBBB槡BBBB槡BBBB| 无码AV久久久久久久久| 色婷婷狠狠久久综合五月| 大香蕉99| 亚洲另类婷婷五月综合| 97色婷婷| 色色激情| 99精品在线观看视频| 情情五月天色| 超碰v| 无码AV免费精品一区二区三区| 欧美激情 日韩无码 婷婷 五月天| 五月天社区| 五月天另类图片| 五月亭亭六月天| 热久久这里只有三级视频| 五月天激情小说| 天天综合网亚洲网站| 婷婷综合在线| 免费99色| 99热这里只有精品98| 狠狠色综合网| 激情内射人妻1区2区3区| 亚洲婷婷激情综合激情999精品| 99精品这里只有免费视频 | 丁香花电影高清在线小说阅读| 亚洲亚洲人成综合网络| 色99视| 天堂婷婷五月色| 丁香 亚洲 久久| 岛国在线观看91| 亚洲免费看片| 亚洲操b| 欧美大肥婆大肥BBBBB| 日韩无码91| 五月丁香六月婷婷中文版| 97干婷婷| 黃色三级三级三级三级 qixing300.shrkbk.com www.jinbozs.com tianmiaosw.com | www99热| 国产日韩欧美| 色欲一区二区三区精品A片| 伊人色综合久久久| av在线色五月丁香婷区久| 亚州色婷婷| 久久国产AV| 伊人婷婷激情| 激情综合区| .comwww在线观看免费操| 九九这里只这里只有精品| 国产成人精品一区二三区熟女在线| 又大又粗九一在线| 丁香五月天堂网| 激情五月婷婷五月| 无码91中文字幕| 国产激情久久| 色婷婷亚洲婷婷| 国产精品成av人在线视午夜片| 亚洲小视频免费看| 婷婷五月天av| 久久丁香综合精品综合| 亚洲小说五月婷婷| 超碰在线免费9| 丁香五月婷婷社区| 六月婷婷五月丁香首页| 精品网站:999WWW| 婷婷五月欧美| 天天做综合网色综合| 怡红院视频| 久久99激情| 五月开心色| 人妻日日日| 天天爽成人综合网站| 六月婷婷激情| 五月丁香六月停停停| 色婷婷五月天激情久久| 97碰在线| 99a级片| 六月婷婷在线视频| 美女婷婷激情亚洲| 免费的日逼视频| 色色丁香婷婷| 国产免费av在线| 狠狠色婷婷777| 久久综合99综合| 丁香女人五月天| 99操视频| 另类精品视频在线观看| 色五月丁香婷婷在线观看| 92久久精品一区二区| 丁香五月在线人妻| 久久人人九九| 九九色之九九色之88| 99精品小视频| 色综合99无码 | 开心五月婷婷激情| 2020日日干| 亚洲九九婷婷| 天天插天天插天天插天天插| 五月天社区婷婷| 天天插天天很| 午夜精品久久久久久久爽| 另类小说五月天| 99热免费精品| 日韩淑女人妻luan伦激情精品一区二| 99re热99| 丁香五月av在线| www.狠狠| 婷婷舔| 极品人妻VideOssS人妻| 日本综合色色| 丁香婷婷色| 九九色大香蕉| 成全看免费观看完整版| 丁香五月天激情四射网| 色99网站| 99re在线免费视频| 激情欧美五月丁香| 久久久久久久久久久久久久久久久精典| 婷婷五月久久| 婷婷六月丁香五月图区| 人妻五月天激情开心网| 成人免费120分钟啪啪| 99在线视频色版| 99久久99久久| xx久久| 久久性刺激| 久久伦乱| 日本色久| 日本久久综合| 超碰人人干| 狠狠爱综合| 欧美色图天堂网| 九九伊人网| 淫视馆aV二区一区| 人人人操Av| 激情www| www.主妇. com| 97五月天| 色情丁香五月天| 国产精品久久久爽爽爽麻豆色哟哟 | 97干在线看| 五月天激情小说| 色噜久| 五月天另类激情在线| 在线观看996精品| 久久综合影院| 97人人看| 五月天天天色| 丁香五月丐人妻| 综合网五月| 色综合播放| 婷婷啪啪| 婷婷五月天激情视频| 日本色啪| 天天爽天天摸人妻综合网| 在线综合啪| 99视频在线观看网址| 先锋资源婷婷| 国产精产国品一二三在观看| AAA久久久| 97人人操人人干| 欧美激情丁香五月| 中字幕视频在线永久在线观看免费 | 欧美69色| 五月婷婷综合网| 99在线免费视频| 久热久| 九九热只有这里是精品| 色婷婷丁香五月| 亚洲色 视频| 午夜福利8055| 欧美性猛交AAAA片黑人| 久久99热网| 五月停停色| 色婷久九| 俺也去在线久久精品23欧美综合视频网站,丰满人妻一区二区三区在线视频53,丰满 | 人人操人| 激情图片婷婷丁香五月| 五月婷亚洲精品AV天堂| 丁香婷婷影院| 午夜精品777| 久超免费视频| 人妻互换HDF中文| 丁香五月电影| 欧美交换配乱吟粗大25P| 色五月色五天色情网| 亚洲成人无码免费| 久操福利| 爱爱色五月天| 啪啪日本欧美| 九九热精品| 99久热在线精品| http:色情日本com| WWW.夜夜| 国产亚洲99久久| 人妻熟妇国产精品| 色婷婷五月基地在线| 狠狠色综合图片| 五月婷婷综合网| 99精品激情| 亚洲色图欧美色图日本视频| 久久婷婷综合五月趴| 99乱视频| 国产成人一区二区三区在线观看| 99精品22| 久久九九@| 嫩草AV久久伊人妇女超级A| 日本在线噜噜| 夫妻超碰在线| 97婷婷色| 丁香五月在线视频黑人| 五月色亚洲| 天天精品视频免费观看| 亭亭社区五月天| 色婷婷先锋| 日本三级中国三级99人妇网站| 九九色综合| www.sezonghe| 伊人碰碰婷婷| 少妇被躁爽到高潮无码文| 久久精彩视频99| www.五月天婷婷| 极品人妻VIDEOSSS人妻| 婷婷丁香人妻天天久久| 99热国产精品| 无码少妇高潮喷水A片免费| 五月激情六月婷婷| 九月激情网| 色婷婷激情五月天丁香| 欧美性猛交AAAA片黑人| 亚州精品色情在线观看| 久久婷婷桃花五月天| 亚洲精品无码久久| 天天操天天爽天天爱| 熟美女麻豆| 天天色天天操天天射| 色五月在线视频观看| 丁香五月婷婷超碰在线| 五月婷婷爽爽爽| 最近在线更新8中文字幕免费| 婷婷色五月激情| 欧美日韩中国| 丁香五月婷久久| 天天爽天天做| 欧美99| 丁香婷婷五月激情四射网| 欧美啪啪9| 少妇性BBB搡BBB爽爽爽视頻| 天天爽夜夜爽夜夜爽精品视频| 天天爽爽日日做做| 91久久人人操| 99re在线观看| 婷婷五月天高清无码| 色情综合网| 婷婷丁香五月天操逼| 国产超碰在线| 五月婷婷六月丁香在线视频| 日本妈妈乱| 九九精品少妇| 狠狠干综合| 五月天综合| 婷婷的五月天另类视频| 97成人视频| 色播丁香| 俺也去在线视频 | 99视频精品在线| 精品一区二区三区四区五区六区介绍| 99ri国产精品| 日本狠狠干| 激情综合五月天| 五月夜丁香| 婷婷五月天激情综合| 激情四射亚洲| 色婷婷电影网| 99热这里只有精品4| 国产阿姨日皮艹逼内射视频 | 九九久久99| 97操女视频| 丁香六月婷| 丁香花电影高清在线小说阅读| 五月丁香av在线| 五月丁香婷婷基地| 奇米色大香蕉| 亚洲va成人va成人va在线观看| 超碰v| 国产精品久久久丁香五月八戒视频| 婷婷综合网| 97人妻人人| 国产乱子轮XXX农村| 69久久99精品久久久久婷婷| 天天热夜夜操| 丁香亭亭久久| 久久9热| 久热re视频在线观看网站| 成年人丁香五月| 亚洲婷婷五月天| 日日操,夜夜撸| 99在线精品视频免费| 亚洲AV免费国产电影| 亚洲综合五月天婷婷| 六月 丁香 视频| 乱亲女洗澡69XX| 97涩婷婷婷婷基地| 99热99在线| 婷婷五月天电影网| 天天噜| 五月天另类小说久久小说网| 婷婷色网| 99玖玖在线视频| 国产精品黑丝| 成人无码精品1区2区3区免费看| 久婷| 狠狠摸狠狠摸| 开心五月深爱激情| 中文字幕+乱码+中文字幕在线观看| 色99日韩| www.色情五月天.com| 九九一区| 天天干天天爽| www.99热视频| 丁香花在线电影小说观看| 色人妻五月| 五月久久五月激情| 伊人久久婷| 无码九九九九| 精品自拍99| 色优久久| 全部老头和老太XXXXX| 另类专区在线| 国产午夜精品一区二区三区嫩草| 五月婷婷激情综合视频| 五月婷婷久久综合| 丁香六月色婷婷欧美| 色色五月天丁香| 成人午夜免费电影| 久久久久久18| 九九综合九色欧美狠狠| 亚洲精品视频在线| 深爱激情丁香| 六月婷婷综合| 亚洲成人中心| 天天日日夜夜| 97色色色色色| 五月天影院| 丁香婷婷六月激情综合| 色人五月婷婷| 欧美激情 日韩无码 婷婷 五月天| 色婷网| 99久在线| 爆乳熟女一区二区三区爆乳| 性色综合网| 天天日P天天射P| 狠狠色色色| 五月婷婷深深爱| 欧美成人精品三区综合A片| 久久激情五月婷婷| 亚洲精品视频电影| 免费无码又爽又刺激A片涩涩直播| 亚洲六月色| 色情五月停停丁香| 狠狠色婷婷六月激情网| 99re这里有精品手机在线| 激情婷婷综合| 天天草狠狠擦| 色欲操| 99热这里只有精品亚洲| 久热这里只有精品6官网亚洲| 97在线/亚洲| 五月综合丁香婷婷| 4438激情网| 亚洲欧洲午夜成人精品av| 99视频91| 激情五月婷婷视频一区二区三区| 成人无码中文| 月丁香久久久| 97超碰色| 97sese婷婷| www.九九婷婷| 丁香五月激情综合久久| 色婷婷小视频| 五月丁香久久激情综合| 玖玖九九9999在线观看视频精品| 午夜微拍福利| 91av色色乱视频| 97伦色婷婷| 色婷婷最新域名 | 啪啪一区| 亚洲成人网站在线观看| 六月色婷婷色| 高清无码.com| 99久热这里有精品| 激情婷婷综合| 丁香婷婷偷拍| www.伊人天堂偷偷婷婷| 五月花婷婷最新| 丁香婷婷六月激情综合| 五月天婷婷丁香花| 2w在线视频| 激情五月婷婷综合色播小说| 色五XX| 色亭亭五月天丁香综合AV - 百度 - 百度 | 色噜噜五月丁香婷婷| 色综合狠狠色| 色蜜婷婷| 丁香婷婷六月天| 久久9视频| 婷丁香久综合| 秋霞学生妹一二级| 亚洲五月综合色播| 另类综合国产| 五月天五月天成人网亭亭成人色网站| 丁香五月天在线| 色婷婷丁香五月| 97干在线播放| 欧美色五月| www.色五月| 大香蕉在九| 色婷婷丁香AV综合| 亚洲AV无码影院| 婷婷射图| 99色综合网| 亚洲综合网激情小说| www,五月丁,com| 操操操AV| 岳和我厨房做爽死我了A片视频| 久久大香蕉同僚| 五月激情偷拍| 河北真实伦对白精彩脏话| 99久操视频| 人妻操日日| 成人国产综合| 五月天婷婷日日爱| 五月天婷婷丁香视频| 五月丁香婷爱在线| 天堂资源中文| 五月天啪啪视频| 亚洲日韩乱码一区二区三区四区| 激情五月婷婷老师| ...婷婷五月综合不卡,国产在线手机| 99热在线看片| 看婷婷五月天网| 婷婷深爱五月亚洲综合| 99在线亚洲| 丁香花五月| 亚洲日日日| 91精品激情9| 婷婷第一页| 站长推荐无码播放| 开心深爱五月天| 天天添天天摸天天天天做| 情趣视频66| 欧亚成人A片一区二区| 天天狠狠夜夜狠狠2023| 99热久久这里只有精品| 香蕉99网| 成人av在线电影| 操国产人妻| 丁香婷婷婷五月| 射区导航| 日韩中文字幕| 狠狠爱婷婷五月天| 99热久草| 狠狠另类视频| 怡红院一二三| 棕合影院色色| 亚洲国产精品二二三三区| 中文字幕视频色婷婷| 一起草日本| 综合AV在线| 夜夜骑日日夜夜| 天天骑天天操| 99精品久久| 99热超碰人| 婷婷五月天黄色网址| 色久婷婷网| 欧美人妻一区二区| 超碰人人在线|