丁香花电影高清在线观看,丁香婷婷色五月激情综合深爱,大地资源中文第二页在线观看,丁香花在线电影小说,丁香花高清在线观看完整版,丁香花在线观看免费观看图片

2024

2024

  • Record 433 of

    Title:Simultaneous transmission of multi-format signals in the mid-infrared over free space
    Author Full Names:Su, Yulong(1); Xue, Jiayi(1); zheng, Yunqiang(1,2); Wang, Wei(2); Tian, Wenlong(1); zhu, Jiangfeng(1)
    Source Title:Optics Communications
    Language:English
    Document Type:Journal article (JA)
    Abstract:Mid-infrared (MIR) light within the 3–5 μm spectrum offers distinct advantages over the 1.5 μm band, particularly in adverse atmospheric conditions, rendering it a favorable option for free-space optical (FSO) communication. The transmission capacity within the 3–5 μm band is relatively low due to the immature state of its devices. In this study, we demonstrate multi-format signals FSO transmission with a total of 40 Gbps capacity in the 3 μm band, utilizing our developed MIR transmitter and receiver modules. These modules facilitate wavelength conversion between the 1.5 μm and 3 μm bands through the utilization of difference-frequency generation (DFG) effect. The MIR transmitter effectively produces three MIR signals: On-Off Keying (OOK), Binary Phase Shift Keying (BPSK), and Quadrature Phase Shift Keying (QPSK) optical signals. The generated MIR power is 7.8 dBm, covering a wavelength range from 3.5864 to 3.5885 μm. The MIR receiver regenerates the three format signals with a power of ?29.6 dBm. Relevant results of regenerated signal demodulation have been collected in detail, including bit error ratio (BER), constellation diagram, and eye diagram. The required powers for the 10 Gbps OOK, BPSK, and QPSK are ?37.82, ?40.24, and ?39.4 dBm at BER of 1 × 10?6. It is expected to further push the data capacity to the terabit-per-second level by adding more 1.5 μm band laser sources and using wider-bandwidth chirped nonlinear crystals. ? 2024 Elsevier B.V.
    Affiliations:(1) School of Optoelectronic Engineering, Xidian University, Xi'an; 710071, China; (2) State Key Laboratory of Transient Optics and Photonics, Xi'an Institute of Optics and Precision Mechanics (XIOPM), Chinese Academy of Sciences (CAS), Xi'an; 710119, China
    Publication Year:2024
    Volume:573
    Article Number:131019
    DOI Link:10.1016/j.optcom.2024.131019
    數(shù)據(jù)庫ID(收錄號(hào)):20243516960710
  • Record 434 of

    Title:439 MHz, 94 fs, low-threshold mode-locked all fiber ring laser
    Author Full Names:Huang, Xiwei(1); Guo, Xiaoxiao(1); Li, Xiaohui(1); Tang, Xu(1); Zhang, Rui(1); Zhang, Yan(1); Wang, Yishan(2); Zhao, Wei(2)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:Pulsed fiber lasers with high repetition rates play a crucial role in applications such as high-efficiency processing and bio-optical imaging. However, many ring fiber mode-locked lasers primarily focus on shortening the cavity length to achieve high repetition rate pulse output. Attention is often directed towards the gain fiber and cavity structure, with less consideration given to the challenge of increasing mode-locking threshold power. In this study, we present a high-repetition-rate annular all-fiber laser system with dispersion management. Through strategic adjustment of the intracavity dispersion away from the near-zero dispersion region and careful control of the intracavity gain strength, we have successfully lowered the mode-locking threshold power. This approach can generate pulses with a repetition rate of 439.71 MHz and a mode-locking threshold power of approximately 600 mW. Following pulse compression, the achieved pulse width is 94.8 fs. Its time-bandwidth product is 0.368. To our knowledge, this represents the highest fundamental repetition rate currently attained using a ring all-fiber resonator, accompanied by the lowest mode-locking threshold. Our work introduces a ring fiber laser system characterized by a low mode-locking threshold and a high repetition rate, offering a valuable method for achieving higher fundamental repetition rate pulses. ? 2024 Elsevier Ltd
    Affiliations:(1) College of Physics and Information Technology, Shaanxi Normal University, Xi'an; 710062, 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:179
    Article Number:111336
    DOI Link:10.1016/j.optlastec.2024.111336
    數(shù)據(jù)庫ID(收錄號(hào)):20242516285052
  • Record 435 of

    Title:The deactivation effects of Nd3+ ion for 2.85 μm laser in Ho3+/Nd3+ co-doped fluorotellurite glass
    Author Full Names:Feng, Shaohua(1,2); Zhu, Jun(1,2); Liu, Chengzhen(1,2); Xiao, Yang(1,2); Cai, Liyang(1,2); Xu, Yantao(1,2); Xiao, Xusheng(1,2); Guo, Haitao(1,2,3)
    Source Title:Journal of Luminescence
    Language:English
    Document Type:Journal article (JA)
    Abstract:The 2.85 μm band has garnered significant attention for its wide range of applications in the mid-infrared region, and Ho3+ doped fluorotellurite fiber shows great promise as a gain medium for the 2.85 μm fiber laser. To achieve efficient population inversion for Ho3+ ions at 2.85 μm, Ho3+/Nd3+ co-doped fluorotellurite glasses with low hydroxyl were synthesized. The deactivation effect of Nd3+ ions to Ho3+: 5I7 levels was investigated through emission spectra and lifetime decay curves under 890 nm excitation. The results show that Nd3+ ions can effectively quench the Ho3+: 2.05 μm emission and help the Ho3+: 5I6 → 5I7 transition to overcome the bottleneck of particle population inversion. Ultimately, the particle population inversion corresponding to 2.85 μm luminescence was realized in the Ho3+/Nd3+ co-doped fluorotellurite glass, and indicates that a maximum of 1.64 W laser at 2.85 μm with a slope efficiency of 8.72 % can be realized under 890 nm pump by numerical simulations. ? 2023 Elsevier B.V.
    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) Collaborative Innovation Center of Extreme Optics, Shanxi University, Shanxi, Taiyuan; 030006, China
    Publication Year:2024
    Volume:266
    Article Number:120308
    DOI Link:10.1016/j.jlumin.2023.120308
    數(shù)據(jù)庫ID(收錄號(hào)):20240215352216
  • Record 436 of

    Title:Dual-parameter femtosecond mode-locking pulse generation in partially shared all-polarization-maintaining fiber Y-shaped oscillator with a single saturable absorber
    Author Full Names:Bai, Chen(1); Feng, Ye(2); Zhang, Weiguang(1); Zhang, Junying(1); Zhang, Tong(2); Mei, Chao(3); Liu, Pandi(4); Fan, Zhaojin(1); Qian, Jiangxiao(1); Yu, Jia(1)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:We present a design of a mode-locked fiber laser based on a polarization-maintaining (PM) Y-shaped fiber structure, which employs a single semiconductor saturable absorber mirror (SESAM) and a common polarization beam combiner (PBC) to achieve dual- parameter mode-locking femtosecond pulse in two orthogonal polarization states. The two output pulses have different characteristics, such as repetition frequency (87.3 MHz and 91.3 MHz), average output powers (2.1 mW and 1.9 mW), pulse durations (299 fs and 377 fs) and spectral profiles (centered at 1565.6 nm and 1563.6 nm with spectral width of 9.96 nm and 9.93 nm). The properties of the two pulses are experimentally characterized and their potential applications in areas such as bistable frequency lasers and dual femtosecond optical frequency comb is discussed. ? 2023 Elsevier Ltd
    Affiliations:(1) School of Optoelectronic Engineering, Xi'an Technological University, Xi'an; 710021, 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; (3) Department of Aircraft Optical Imaging and Measurement Technology, Xi'an Institute of Optics and Precision Mechanics, Chinese Academy of Sciences, Xi'an 710119, China; (4) School of Science, Xi'an Shiyou University, Xi'an; 710065, China
    Publication Year:2024
    Volume:169
    Article Number:110021
    DOI Link:10.1016/j.optlastec.2023.110021
    數(shù)據(jù)庫ID(收錄號(hào)):20233614695327
  • Record 437 of

    Title:Noise Image Processing Algorithm for a Low-light EBCMOS Acquisition System Based on FPGA
    Author Full Names:Cao, Yi(1,2); Zhu, Xiangping(1); Zhang, Xiaomo(1,2); Zhao, Wei(1); Ma, Jun(3)
    Source Title:Guangzi Xuebao/Acta Photonica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:The development of Electron-Bombarded Complementary Metal-Oxide-Semiconductor (EBCMOS)technology marks a significant advancement in image sensors, particularly enhancing low-light and night vision applications. This paper addresses challenges in device development due to material and manufacturing imperfections that introduce complex noise into night vision imagery. Additionally, it highlights the drawbacks of traditional software-based image processing platforms, including their low real-time performance and high operational costs.An analysis of low-light imaging characteristics of EBCMOS, developed by the Xi'an Institute of Optics and Mechanics, is presented. This research introduces a multistage pulse noise suppression and edge enhancement algorithm, designed on a Xilinx-FPGA platform, tailored to tackle mixed noises such as Poisson noise, salt-and-pepper noise, and speckle noise prevalent in low-light conditions. EBCMOS sensors are distinctive in their ability to enhance visibility in dark environments through an electron-bombarding mechanism that amplifies signals before CMOS processing. This capability is crucial for applications requiring high-quality night vision, such as security surveillance and wildlife monitoring. The imperfections in materials and fabrication processes can result in various noise types, degrading image quality and obscuring critical details.The paper details a sophisticated FPGA-based algorithm that leverages modern processing power to efficiently reduce noise while preserving important image details. This is achieved through advanced noise reduction techniques that specifically target the unique characteristics of each noise type, improving upon traditional methods like median filtering and Gaussian blurring. Experimental results show that this algorithm enhances the Peak Signal-to-Noise Ratio (PSNR)by 11.37% over median filtering and 26.64% over Gaussian blurring.Moreover, the processing speed for a single image frame is improved approximately 21 times compared to software platforms on high-end processors, demonstrating the algorithm's capability to handle real-time image processing tasks efficiently. This not only suggests potential cost reductions but also supports the integration and miniaturization of wearable night vision devices.In summary, this study provides significant insights into the benefits of FPGA-based image processing for EBCMOS technology in night vision applications. The advancements facilitate more effective and efficient night vision systems and promote the development of integrated, lightweight wearable devices, offering substantial benefits for both military and civilian uses. ? 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, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China; (3) Xi'an Institute of Atomic Precision Manufacturing Technology Co., Ltd., Xi'an; 710110, China
    Publication Year:2024
    Volume:53
    Issue:11
    Article Number:1110002
    DOI Link:10.3788/gzxb20245311.1110002
    數(shù)據(jù)庫ID(收錄號(hào)):20245117548518
  • Record 438 of

    Title:A compact 51.6-W, 26-μJ, Yb-doped all-fiber integrated CPA system through quasi-rectangular pulse pre-shaping
    Author Full Names:Li, Qianglong(1,2,3); Li, Feng(1); Liu, Hongjun(1); Zhao, Wei(1); Zhao, Hualong(1); Wang, Yishan(1); Wen, Wenlong(1); Cao, Xue(1,2,3); Si, Jinhai(2)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:A compact 51.6-W, 26-μJ all-fiber integrated Yb-doped femtosecond laser source with pulse durations of 692 fs despite ~18π nonlinear phase shift accumulation in the main amplifier is demonstrated by using fiber quasi-rectangular pulse pre-shaping. The numerical results are in good agreement with the experiment. Due to the advantages of an all-fiber spliced structure and a minimal pulse stretching ratio (from 26.3 ps to ~70 ps), just a small size of gratings and a short separation distance between the two gratings in the compressor is required. Therefore, the laser source is exceedingly compact, robust, cost-effective, and easy to assemble. This technique is anticipated to accelerate the use of fiber femtosecond lasers in industrial applications. ? 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, Shaanxi, Xi'an; 710119, China; (2) School of Electronic and Information Engineering, Xi'an Jiaotong University, Shaanxi, Xi'an; 710049, China; (3) University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    Volume:170
    Article Number:110300
    DOI Link:10.1016/j.optlastec.2023.110300
    數(shù)據(jù)庫ID(收錄號(hào)):20234515013310
  • Record 439 of

    Title:Experimental Analysis of Coherent Velocity Measurement Based on Near-infrared Single-element SPAD Detector
    Author Full Names:Li, Bin(1); Wang, Xiaofang(2,3); Kang, Yan(2); Yue, Yazhou(1); Li, Weiwei(2,3); Zhang, Yixin(1); Lei, Hongjie(1); Zhang, Tongyi(2,3)
    Source Title:Guangzi Xuebao/Acta Photonica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:Coherent lidar has advantages of suppressing background noise such as sunlight and detecting sensitivity close to shot noise limit. It is widely used in civil and defense fields such as wind detection,velocity measurement and military target detection. Coherent detection can be divided into heterodyne detection to extract frequency information and homodyne detection to extract phase information. For velocity measurement,heterodyne detection is usually used to extract the Doppler frequency shift of the echo laser from a moving target,and then the velocity of target is retrieved. Conventional heterodyne lidar adopt normal optical detectors,such as PIN detectors,which have limited detection sensitivity for a small number of echo photons. And generally,strong local oscillator laser power is required to suppress thermal and circuit noise,but excessive local oscillator is likely to generate excess shot noise. With the development of Single Photon Avalanche Diode(SPAD)detector with low circuit noise,it not only provides a way for the detection of a small number of echo photons,but also makes it possible to realize heterodyne detection with a weak local oscillator. Researchers have successively adopted InGaAs SPAD array detectors and superconducting nanowire single-photon detectors for near-infrared spectrum, single-element Si SPAD detectors and MPPC detectors for visible spectrum,but there have been few experimental research on heterodyne detection with single-element InGaAs SPAD detector. The heterodyne lidar based on near-infrared SPAD can be integrated in all-fiber structure with an operating wavelength of 1.5 μm,which makes it more suitable for practical working platforms such as airborne. Although the count rate dynamic range of the single-element SPAD is not as good as that of the SPAD array,the current disadvantages of SPAD array,such as low pixel fill-factor,poor uniformity of pixel performance(e.g.,hot pixel),and slow speed of data readout,limit its performance to a certain extent. Besides,compared with superconducting nanowire single-photon detectors,single-element near-infrared SPAD do not require extremely complex and bulky cooling system. Therefore,we established a heterodyne velocimetry experimental system based on a 1.5 μm fiber laser and a single-element InGaAs SPAD detector to analyze the influence of SPAD's dead time,dark count rate and photon count rate for the extracting of beat frequency. The output laser was shifted by 40 MHz using an Acousto-optic Frequency Shifter(AOFS)to simulate the Doppler frequency shift of the echo laser from a moving target. Then,under the experimental set up of 1 μs dead time and 1 ms data acquisition time,we analyzed the influence of different photon count rates on the SNR of the beat frequency spectrum under SPAD's dark count rates of 1.8 kHz,54.4 kHz and 194.4 kHz. The experimental results show that,the SNR increases gradually and then tends to be stable with the increase of the photon count rate. When the photon count rate is close to saturation,harmonic frequency components appear in the low-frequency area of the frequency spectrum as well as the two side regions centered on the beat frequency. The harmonic frequency spacing is basically equal to the photon count rate. The optimal photon count rate which is slightly affected by harmonics is about 90% of saturation count rate of SPAD detector. In addition,as the dark count rate increases,the photon count rate required to extract the beat frequency signal is higher. The experimental results can provide a reference for the development and practical application of all-fiber single-photon Doppler velocity measurement lidar technology. ? 2024 Chinese Optical Society. All rights reserved.
    Affiliations:(1) Xi'an Flight Automatic Control Research Institute, Aviation Industry Corporation of China, Xi'an; 710065, 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; (3) University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    Volume:53
    Issue:1
    Article Number:0104001
    DOI Link:10.3788/gzxb20245301.0104001
    數(shù)據(jù)庫ID(收錄號(hào)):20240815582095
  • Record 440 of

    Title:Color Non-line-of-sight Imaging Based on Time-correlated Single Photon Counting
    Author Full Names:Li, Weiwei(1,2); Zhang, Tongyi(1,2); Kang, Yan(1); Xue, Ruikai(1,2); Wang, Xiaofang(1,2); Liang, Jintao(1,2); Li, Lifei(1)
    Source Title:Guangzi Xuebao/Acta Photonica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:Non-Line-Of-Sight(NLOS) imaging is a special optical imaging technique. It refers to the technique of reconstructing an image of an object in the event of an occlusion between the imaging system and an object that cannot be directly observed. It is to collect and analyze the photon signal returned from the target through the intermediate surface(such as wall,floor,etc.),to realize the image reconstruction of the target scene. NLOS imaging can be divided into active and passive depending on whether an active illumination source is used or not. Passive NLOS imaging systems rely primarily on the object itself emitting light or reflecting ambient light for imaging. Active NLOS imaging systems generally use a laser source for active illumination,it can obtain 3D image of the NLOS target through collecting time-resolution photon data. With the development of semiconductor single-photon detectors,Single-Photon Avalanche Photodiode (SPAD) detectors have gradually been widely used in active NLOS imaging technology due to their advantages of single photon detection sensitivity and picosecond temporal resolution,small size and low power consumption. However,in previous studies,researchers always used single-wavelength laser source to illuminate,and the reconstructed images of the targets only provide grayscale information of the target. In this paper,we demonstrate a color NLOS imaging method based on Time-Correlated Single-Photon Counting(TCSPC)and multi-wavelength laser illumination. First,we built a NLOS imaging system using confocal optical path mode,adopt a SPAD detector and a picosecond multi-wavelength pulsed laser. Then,the phasor field virtual wave algorithm is used to reconstruct the data collected by the three wavelength channels of 620±1.5 nm,532±1.5 nm and 485±1.5 nm,respectively. Finally,the three images obtained through different wavelength channels are synthesized to obtain a color NLOS image. In the experiments,targets containing different color information were selected for color NLOS imaging verification. The emitting laser repetition rate was set to 9.73 MHz,and the average power of the three wavelength lasers of 620 nm,532 nm,and 485 nm were 255.9 μW,100.8 μW,and 179.7 μW,respectively. A Silicon SPAD with a time jitter of 40 ps was used for echo photon detection. A 45 cm×45 cm wooden board with white wallpaper on its surface was used as the intermediate wall. The intermediate wall was 1 m away from the NLOS imaging system,and the target was 0.2 m away from the intermediate wall. The laser beam was controlled to scan 20×20 pixels on the intermediate wall and the interval between scanning points is 2 cm. The single point scanning time is 20 s. Under the above experimental parameter settings,NLOS imaging was performed on two targets containing four colors of red,white,yellow,and orange. By analyzing the PSNR of the imaging results,it can be obtained that the PSNRs of the 620 nm channel,the 532 nm channel,the 485 nm channel,and the synthetic color NLOS image are 7.9 dB,7.4 dB,6.7 dB,and 9.2 dB,respectively. This proves that the complementary detection of the three wavelengths can be used to obtain color NLOS imaging results with enhanced image quality. In summary,our proposed color NLOS imaging method can reconstruct the color image of complex NLOS targets with white,red,yellow and orange color features. Meanwhile,the complementarity of multi-wavelength detection can restore the 3D NLOS image with more complete details,which further expands the information dimension of NLOS imaging technology. In the future,it is planned to design a beam splitting system for the back-end receiving optical path and increase the number of SPAD detectors to detect more wavelengths simultaneously,so as to achieve high-efficiency TCSPC color non-line-of-sight imaging. ? 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 CAS, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    Volume:53
    Issue:11
    Article Number:1111001
    DOI Link:10.3788/gzxb20245311.1111001
    數(shù)據(jù)庫ID(收錄號(hào)):20245117558412
  • Record 441 of

    Title:A 90 SrHfO 3 -based betavoltaic/beta-photovoltaic dual-effect integrated nuclear battery
    Author Full Names:Cui, Qiming(1); Lu, Jingbin(1); Zhang, Yu(1); Yuan, Xinxu(1); Li, Chengqian(1); Zhao, Yang(1); Zheng, Renzhou(2); Li, Xiaoyi(1); Liu, Yuxin(1); Liu, Xinrui(1)
    Source Title:Applied Physics Letters
    Language:English
    Document Type:Journal article (JA)
    Abstract:In this paper, the secondary conversion idea is used to reduce the self-absorption effect of the radioactive source by combining the radioactive source with the scintillation material, so as to enhance the energy conversion efficiency of the battery. A theoretical model of a dual-effect integrated nuclear battery based on 90 SrHfO 3 doped with Ce is proposed. The emission photon and electron spectra of the β -luminescent integrated radioactive source 90 SrHfO 3 have been calculated by GEANT4. The average outgoing electron energy of SrHfO3 was calculated, and the thickness of the energy reducing material was determined. The effect of structural parameters of GaAs materials on the dual-effect integrated nuclear battery was analyzed to obtain the optimal output performance according to theoretical calculation. From the perspective of conversion efficiency, the activity density and thickness of 90 SrHfO 3 are determined to be 1.6 Ci/cm2 and 53.6 μ m. At this time, the thickness of SrHfO3 is 1.28 mm. The total maximum output power density of the optimized dual-effect integrated nuclear battery is 9.31 μ W/cm2, and the energy conversion efficiency is 0.18 % . At this point, the doping concentrations of GaAs are N a = 1.26 × 1017 cm?3 and N d = 6.31 × 1018 cm?3, and x j is 0.05 μ m . Compared with nonintegrated batteries, the output performance is significantly improved. ? 2024 Author(s).
    Affiliations:(1) College of Physics, Jilin University, Changchun; 130012, 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:125
    Issue:16
    Article Number:163902
    DOI Link:10.1063/5.0230622
    數(shù)據(jù)庫ID(收錄號(hào)):20244317252392
  • Record 442 of

    Title:Optical diffraction tomography based on quadriwave lateral shearing interferometry
    Author Full Names:Yuan, Xun(1,2); Min, Junwei(1); Zhou, Yuan(1,2); Xue, Yuge(1,2); Bai, Chen(1); Li, Manman(1); Xu, Xiaohao(1); Yao, Baoli(1,2)
    Source Title:Optics and Laser Technology
    Language:English
    Document Type:Journal article (JA)
    Abstract:Optical diffraction tomography (ODT) is an emerging microscopy that enables quantitatively three-dimensional (3D) refractive index (RI) mapping of subcellular structure inside biological cells without staining. Due to the noninvasive, label-free, and quantitative imaging capability, ODT has become an important technique in the fields of cell biology, biophysics, hematology, and so on. It is customary to acquire a set of two-dimensional (2D) phase images of a transparent sample from different illumination angles by using the classical Mach-Zehnder interferometry (MZI), and then numerically reconstruct the 3D RI distribution of the sample via appropriate tomographic algorithms. However, due to the limited stability of MZI, the cumulative measured phase errors reduce the accuracy of the reconstructed RI. Here, we propose a common-path ODT based on quadriwave lateral shearing interferometry (QLSI), referred as Q-ODT. In QLSI, the object beam carrying the phase information of sample is divided into four copies by a specially designed 2D diffraction optical element, then the diffracted waves interfere with each other to form the interferogram at the image plane. The complex amplitude map of the object is quantitatively retrieved from the single-shot interferogram by using a Fourier analysis algorithm and a 2D phase gradient integration. A spatial light modulator is employed to ensure high-precision illumination angle scanning without mechanical motion by addressing a series of different periods and orientations blazed gratings. The average fluctuation of the measured phases of a test polystyrene bead by acquiring 300 interferograms in 12 s presents 7.6 mrad, surpassing the conventional MZI-based ODT. The 3D RI distribution of the bead reconstructed from 145 complex amplitude maps via multi-illumination angles with a maximum angle of 70° matches the manufacturer's specification well, demonstrating the high accuracy of the 3D RI imaging capability of the Q-ODT. The lateral and axial resolutions of the 3D RI reconstruction were measured to be 306 ± 21 nm and 825 ± 34 nm, respectively. The proposed Q-ODT method successfully reconstructed the intracellular structure of the biological specimens of Eudorina elegans and mouse bone mesenchymal stem cells (BMSC). The Q-ODT offers a new route towards 3D RI imaging for label-free transparent samples in biomedical research. ? 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
    Publication Year:2024
    Volume:177
    Article Number:111124
    DOI Link:10.1016/j.optlastec.2024.111124
    數(shù)據(jù)庫ID(收錄號(hào)):20241916034871
  • Record 443 of

    Title:A different view on the deactivation process of 3-hydroxy-salicylidene-methylamine system
    Author Full Names:Han, Guoxia(1); Wei, Hongyan(2); Yu, Xianghua(3); Zhang, Jialing(1); Ma, Yanbin(1); Liu, Peng(1)
    Source Title:Chemical Physics Letters
    Language:English
    Document Type:Journal article (JA)
    Abstract:Schiff bases stand out as a highly significant class of photochromic materials with widespread applications. The exploration of their photochromic mechanisms has garnered substantial interest over the past decades. In this work, we investigated the photochromic mechanism of 3-hydroxy-salicylidene methylamine (3-OH-SMA) by high-level electronic structure calculations and on-the-fly excited state dynamics simulations. Our investigation revealed the identification of three minimum energy conical intersections between S1 and S0 states, while only the one characterized by the central C = N bond twisting motion was involved in the deactivation process. This finding contrasts with previous reports, suggesting that the excited state intramolecular proton transfer (ESIPT) process was the main reaction channel in 3-OH-SMA. The proposed new decay mechanism provides valuable theoretical insights, paving the way for the further enhancement or rational design of photochromic materials. ? 2023 Elsevier B.V.
    Affiliations:(1) College of Science, China University of Petroleum (East China), Shandong, Qingdao; 266580, China; (2) College of Physics and Optoelectronics, Taiyuan University of Technology, Shanxi, Taiyuan; 030024, 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
    Publication Year:2024
    Volume:835
    Article Number:141004
    DOI Link:10.1016/j.cplett.2023.141004
    數(shù)據(jù)庫ID(收錄號(hào)):20235015192341
  • Record 444 of

    Title:Optical Torques Induced by the Spirally Polarized Vector Beam
    Author Full Names:Niu, Ruixin(1,2); Gao, Wenyu(1,2); Zhang, Qiang(1,2); Zhang, Yanan(1,2); Zhou, Yuan(1,2); Li, Manman(1); Xu, Xiaohao(1,2); Yan, Shaohui(1); Yao, Baoli(1,2)
    Source Title:Guangzi Xuebao/Acta Photonica Sinica
    Language:Chinese
    Document Type:Journal article (JA)
    Abstract:The Imaginary Poynting Momentum (IPM) is associated to the imaginary part of the well-known complex Poynting vector. When light fields interact with matter,researchers usually pay attention to the real part of the complex Poynting vector,while neglect its imaginary part. However,the real Poynting vector describes only a portion of the physical mechanism underlying light-particle interaction. Recent theoretical and experimental breakthrough have been made in the study of the IPM force,which has gained increasing interest that the IPM force is independent of the optical radiation pressure and intensity gradient force. It provides a new degree of freedom for optical micromanipulation with structured light,such as vector beams,evanescent and two-wave interference fields. The IPM force can be detected directly with a Mie particle in the tightly focused Spirally Polarized Vector Beam(SPVB)when the IPM appears in the azimuthal direction. Nevertheless,the spinning optical torque caused by the vortex-like structure of IPM has not been investigated. In order to study the rotational manipulation of particles by this IPM vortex,we use the Finite-Difference Time-Domain(FDTD)method,to investigate the spinning optical torque acting on microparticles,illuminated by the SPVB,and to study the influence of the particle material properties on the torque. The cylindrical vector beam is constructed by the in-phase superposition of the radially and azimuthally polarized vector beam. When the angle of polarization is π/4,this cylindrical vector beam is the spirally polarized vector beam characterized by the IPM arising in the azimuthal direction. The FDTD method is a prevailing solution that can be used to solve Maxwell's equations and optomechanics for arbitrarily shaped particles. The scattering problem of arbitrary particles can be handled,so the FDTD method is characterized by high inclusivity and high accuracy. The spinning torque is computed rigorously based on the Maxwell stress tensor method,or the conservation of optical angular momentum of the total field. By changing the wavelength of the incident field as well as the size,shape and material of the particles,the spinning optical torque characteristics of the particles under the SPVB are analyzed comprehensively. The computation results show that this SPVB can induce the spinning optical torque,which drives the microparticle to spin about their own axis. For rod-like particles,the spinning optical torque increases first,and then decreases with the increase of incident wavelength. There is the phenomenon of resonance peaks explained by the multipole resonances induced in the particles. The spinning optical torque tends to increase first and then decrease with the increase of particle's length,and the spinning optical torque reaches the maximum value at particle's length around 2 μm. Moreover,it is found that,for the particles with complex geometrical structures(e.g.,equilateral-triangle,hexagonal and chiral structures),the spinning optical torque is at least one order of magnitude larger than that of the rod-shape particle,and the values and directions of the spinning optical torques are more varied. On complex geometrically structured particles of certain sizes and materials,due to the effect of resonance,there are overall large value and opposite direction for the spinning optical torques. The particles selected in this paper have some special shapes,but for generic isotropic particles,IPM can also induce them to spin. This reveals a new method for achieving light-driven microrotors,which does not rely on the optical angular momentum. The azimuthal IPM complements the spin and orbital angular momenta in terms of their rotational mechanical effects,which has potential applications in the field of optical micromanipulation and levitated optomechanics,especially in the realization of unusual optomechanical manifestations such as the negative or left-handed optical torque. ? 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, Xi'an; 710119, China; (2) University of Chinese Academy of Sciences, Beijing; 100049, China
    Publication Year:2024
    Volume:53
    Issue:11
    Article Number:1126001
    DOI Link:10.3788/gzxb20245311.1126001
    數(shù)據(jù)庫ID(收錄號(hào)):20245117562978
婷婷中文字幕版| 97在线天堂| 五月天堂色| 亚洲婷婷免费| 操丝袜视频影院导航| 人妻操逼视频。| 91久久色| 久久久99免费视频| av线电影| 激情五月色综合网| 影音先锋综合网| chaopengdaxiangjiao| 国产真实乱了老女人视频| 五月丁香激情婷婷| 久热91精品| 五月丁香六月情| 国产裸舞表演WWWW| 激情婷婷五月社区| 五月婷婷我| 26UUU欧美激情一区二区| 婷婷五月天最新综合你懂的 | 亚洲国产精品VA在线看黑人| 丁香六月啪啪| 99久久9| 大香蕉婷婷丁香视频在线| 天堂在线婷婷| 就爱日五月天| 日本玖玖在线| 国产第99页| 激情婷婷在线| 99在线视频喷水| 国产jd1024基地手机看国产| 久久综合网桃花| 91九色PORNY中文啦| 九九久久久综合| 97婷婷五月丁香| 婷婷激情五月天小说| 亚洲黄网AV| 国产AV一区二区三区最新精品| 婷婷五月激情中文字幕| 国产午夜成人免费看片无遮挡 | 性爱视频久久| 天天射影院| 这里只有精彩视频| 五月丁香本色在线观看| 亚洲国产网站| 国产激情在线观看| 激情爱爱网站超大免费| 韩国三级五月天婷婷。| 激情五月综合ì香亚洲| 三十路磁力链接| 婷婷五月婷婷五月| 五月婷婷AV| 亚洲色热| 五月丁香六月欧美综合网站| 99热在线观看| 九九九AAA热视频| 熟美女麻豆| 亚洲熟女乱色综合亚洲网站| 2017人人操| 播四月婷婷六月丁香| 亚洲色在线观看| 九九热99热| 99成人在线观看| 再深点灬舒服灬太大了添A片小说| 久久大香蕉同僚| 婷婷五月综合在线| 日韩黄色中文字幕| 婷婷趴趴| 五月亚洲激情| 亚洲va欧美va国产综合久久久 | 色婷婷伊人| 激情丁香五月天综合| 综合五月草| 婷婷丁香五月精品| 欧美丁香五月| 丁香婷婷六月天| 丰满少妇猛烈A片免费看观看| 乱精品一区字幕二区| 五月丁香狠狠爱| 丁香五月伊人| 综激情网| 丁香五月婷婷动漫视频| 青青草激情网| 五月丁香色色| 日韩限制级大尺度黑料泄密大尺度视频一区二区在线观看 | 日本天天色| 色欧美一级| 中文在线视频久9| 九九狠狠干| 老司机午夜福利视频金瓶梅| 五月天在线视频尤物视频在线看| 狠狠色噜噜狠狠狠888| 97碰久久| 日曰躁夜夜躁2026| 亚洲九区| 停停五月天激情网| 亚洲av网站在线观看| 少妇性按摩无码中文A片 | 成人短视频在线| 成人婷99最新| 日本操天堂| 人人爽欧美婷婷久久久五月丁香| 婷丁五月| 欧美日韩AAAA| 亚洲欧美婷婷五月色综合| 8050一级网| 久久综合首页| 国产成人VA| 婷婷五月无码| 少妇高潮呻吟A片免费看软件| 久久婷婷午夜| 婷婷97碰碰| 婷婷丁香五月天在线视频| www.日日夜夜.com| 五月天婷婷视频| 日本44久久在线| 久久久久98| 亚洲亚洲激情| 开心激情综合| 六月色婷婷| 婷婷色香六月综合激情| 亚洲久久婷婷| 91碰碰碰| 狠狠色噜噜狠狠亚洲A∨| 色婷婷久久综合| 日日操,夜夜撸| 色婷婷88| 大香蕉福利导航| 91精品久久久久久| 婷婷瑟瑟五月天| 99亚洲精品视频| 99热99思午夜精品| 亚洲看av的网站| 精品影院| 99亚洲精品综合在线| 一逼色综合| 国产色五月| 五月丁香999| 婷婷综合在线网| 婷婷丁香五月天哟啪| 一级操逼内射在线视频| 99噜噜噜在线播放| 少妇婷婷五月天| 99热99热不卡| 久色激情| 六月丁香大香蕉| 66精品成人免费网站在线观看| www婷婷| 激情骚五月| eeuus五月婷| 国产裸体AAAA片色戒| 婷婷五月色| 婷婷视频网| 色五月婷婷很很操| 日本二级毛片二级毛片| 99在线er热| 色婷婷国产精品综合在线观看| 婷婷在线中文字幕| 丁香五月香蕉在线| 亲子乱AV-区二区三区| 婷婷综合在线播放| 丁香五月婷综合网| 欧美激情性做爰免费视频| 香蕉狠狠爱视频| 久久综合五月| 国产婷婷五月| 99热这里只有精品最新地址获取| 欧美性色A片免费免费观看的 | 久久久精品视频79| 少女大人尖叫免费观看动漫| 色九九丁香九月色九九色| 5月婷婷六月丁香| 91Chinese在线| 久久香蕉丁香| 无码区婷婷五月花开| 99色色| 婷婷成人网五月天| 九九亚洲综合| 亚洲无aV在线中文字幕| 婷婷五月天在线综合| 伊人久久激情图区五月| 拍拍视频| 伊人玖玖网| 久久免费视频62| 在线另类| 伊人六月无码视频| 精品无码久久久久久久久| 丁香五月网址| 97干在线观看视频| 色九九九九| 夜夜骑夜夜撸| www.91AV.com| 色五月婷婷内射| 碰97 久| 包操45分钟网站| 丁香五月性爱| 掩去也综合五月视频| av网址在线| 欧美色久| 久草视频一,二三四| 伊人婷婷91| 天天日本夜夜谢| 1024在线视频| 婷婷天堂综合| av在线不卡播放| 天天做天天爱天天玩夜夜爽| 九九丁香社区欧美激情| 天天操天爱综合| 大香蕉啪啪网| 深爱五月中文字幕| WW婷婷五月天com| 婷婷五月丁香五月天| 精品夜夜澡人妻无码AV| 久久精彩视频99| 亚洲精品一二三| 99热这里只有精品50| 五月婷婷涩涩爱| 狠狠操在线视频| www五月婷婷88导航| 天天操夜夜玩!| 婷婷97色| 啄木鸟丝袜美女福利视频| 另类亚洲电影| 成人丁香五月天Av| 九九热a| 婷婷性爱| 欧美成人日韩| AV九九| 色五月综合在线| 天天做天天爱天天爽夜夜揉| 99久热| 色。 婷婷婷| 9久热精品在线视频| 操嫩逼电影| A片天天| 激情五月丁香六月综合AVXXXX| 婷婷伊人綜合| 性视频久久| 欧美噜噜噜草| 日本二级毛片二级毛片| 天天高潮夜夜爽| 五月婷婷综合影院| 日韩成人中文字幕| 五月亚洲激情| 99A片| 五月丁香偷拍| 九九激情综合| 久久视频在线视频| 五月丁香婷婷成人网| 99精品无码网站| 99在线精品免费视频| 丁香五月 六月婷婷首页| av五月天婷婷丁香| 97色婷婷| 婷婷激情五月吧| 高清无码网址| 五月天婷久精视频| 99操碰| 亚洲精品久久久久AV无码| 婷婷激情五月天亚洲综合| 变天就操逼婷婷五月| 天天综合 99久久婷婷| 91狠狠色丁香婷婷综合久久精品| 久久久国产精品黄毛片| 婷婷五月激情天| 五月婷婷综合久久| 99精品视频在线观看| 久久精品亚洲一级牲爱综合| 日韩成人无码人妻| www.97视频| 久久精彩视频| 五月天色婷伊人| .操區COm| 中文字幕日产A片在线看| 99免费热视频| 色婷婷欧美| 中文中文在线| 成全看免费观看完整版| 99激情视频热| 国产一区18| 精品色色| 丁香五月影院| 国产探花AV在线| 9久久AV| 亚洲色五月婷婷| 丁香五月天BBw| 91九色中文字幕女在线观看| 国产无遮挡又黄又爽免费网站| 五月婷婷激情综合视频| 99爱爱| 色图亚洲91| 99免费热视频在线| 99精品免费欧美小视频| 久热这里只有精品性色AV| 一级视频网址| 久色资源| 激情五月天婷婷在线网址发给我| 丁香六月久久| 影视av久久久噜噜噜噜噜三级| 欧美日韩精品人妻狠狠躁免费视频 | 亚洲丁香花五月丁香花| 激情六月综合| 五月天成人网在线观看| 精品一区二区三区四区五区六区介绍| 婷婷激情四射五月天| 久久久久人妻精品| 婷婷五月天网| 日日噜狠狠色综合久久| 久婷| 精品爆操| 人人肏逼视频在线一区二区| 丁香五月婷婷基地| 色五月天在线观看| 天天爽天天弄| 激情五月丁香社区| 91女人18毛片水多国产| 思思热精品在线视频| 五月婷婷中文| 色五月色综合| 99热99ai| 婷婷开心久久| www.精品99| 99操网站| 国产精品a无线| 97九色视频| 综合图区激情| 男人天堂亚洲综合| 99ri精品| 色噜久| 1024国产在线| 99色性爰网络| 超碰在线免费9| 色99热| 在线VA视频| 99九色视频在线观看| 色色色色色色色色色色色色色色,网站| 亚洲va综合va国产va中文| 草莓视频ios| 看久久性爱视频| 另类婷婷丁香| 亚洲综合网区| 99九九热在线观看| 色婷婷香蕉丁丁网| 久久综合综合综合| 丁香六月成人| 亚洲1区| 中文无码婷婷| 曰本久久女| 免费亚洲婷婷| 国产精品成人在线| 亚洲色夜| 婷五月天| 丁香五月婷老师| 另类小说婷婷色| 六月丁香成人| 五月天婷婷色在线视频免费观看| 91婷婷搞| 99亚洲视频| Aα在线免费观看| 亚洲成人在线电影网站| 岛国在线观看91| 国产精品18久久久| 97色婷婷| 综合网色| www.五月婷婷| 99热在线精品播放| 老熟女重囗味HDXX69| 99热在这里只有精品| 色天天综合成人网| 亚洲激情视频网| 久热2025无码| 少妇日麻屄| 久久精品亚洲一级牲爱综合 | 久久久91精品| 色五月亚洲| 91打屁股免费看| 日本熟妇乱妇熟色A片蜜桃| 九九视频在线| 五月天开心网| 国产美女无遮挡裸体毛片A片| 五月天色丁香| 亚洲国产99| 亚洲第一第二网站| 丁香五月成人社区| 成功精品影院| 亚洲色久| 一本色道久久88加勒比| 日韩黄色影院| 在线观看视频1区| 以及AA大片看看| 91无码一起草| 日韩有码一区| 亚洲婷婷丁香五月| 99热色婷婷| 1024成人在线观看| 色五婷婷| 色玖玖爱| 婷婷六月丁香在线| 久婷婷五月天影院| 国产免费一区二区三州老师F1F1| 五月天啪啪啪| 婷婷五月色| 亚洲成人中心| 色婷婷狠狠爱| 国产精品人人做人人爽人人添| 青青草免费公开视频| 777精品久无码人妻蜜桃| 日本99热| 9色小视频在线观看| 久久天堂色| 99啪啪网| 久操操| 五月丁香婷婷在线综合蜜桃| 三十路磁力链接| 久久性爱视频久久性爱视频| 亚洲综合99| 五月天狠狠色| 99热这里只有精品4| 国产露脸150部国语对白| 91在线操逼视频| 丁香久久激情俄| 97干视频在线| 国产色丁香| 天天色,天天操,天天射| 五月 婷婷 成人| AⅤ网站在线看| 欧美日韩精品人妻狠狠躁免费视频| www.99视频| 丁香五月婷婷香| 铁牛TV人妻| 超碰人人在线| 久久99久久99精品免视看婷婷| av中文网站| 大地资源影视中文官网入口| 丁香六月啪| 51精品国自产在线| 超碰伊人碰婷婷五月| 91人人爽狠狠狠| oumeisesewang| 亚洲人成人五月天| 激情 婷婷| 99视频只有精品| 婷婷色综合网日韩国产| 99热丁香| 极品人妻VIDEOSSS人妻| BBWCUCKOLD精品熟妇| 停停六月 综合| 六月天六月婷| 国产精产国品一二三在观看| 91精品久久久久| 亚洲色频| 久久33视频| 五月天色婷婷小说| 免费看欧美成人A片无码| www.99热在线观看| 韩国激情五月天综合网| 国产免费一区二区三州老师F1……| 综合亚洲五月天| 丁香五月91| 色播五月综合网| 丁香色婷婷| 欧美日本不卡黄色片| 婷婷激情综合色五月久久,色婷婷丁香花,丁香婷婷五月情天,久久婷婷五月综合色 | 久久99婷婷| 女人野外做爰A片妓女| 国产综合A片| 亚洲久久婷婷| 九九成人| 狠狠草婷婷| 五月婷婷色五月| 伊人99热| 岛国AV网| 欧美天天草人人草| 91成人视频| 天堂在线9| 涩涩五月天| www.99久久久久99| 女高怪谈在线观看| 久久综合55| 日日日影院| 婷婷香蕉精品| 久久性爱网站| 九九99九九精品免费 | 久色网址| 五月丁香久久网| 激情婷婷五月| 99热综合在线| av网址在线| 五月丁香亭亭操逼| 亚洲综合视频在线| 超碰色综合| 五月天天堂久久| 亚洲色夜| 99九色视频在线观看| 人妻激情综合| 日本一道久久| 色婷视频| 色狠狠激情五月| 激情五月天影院| 99免费成人网| 亚洲乱码日产精品BD| 久久一热免费视频| 亚洲精品国产熟女久久久| 婷婷激情另类| 99久久精品免费精品国产_国产精品久久久久久_国产在线|日韩_久久国产精品电影 | 97碰超级人人看| 亚洲精品国产成人AV在线| 亚洲成人av在线| 色婷久久| 99精品在线| 婷婷丁香久久五月综合| 久久久婷| 综合激情深爱| 99啪在线视频| 亚洲99在线| 亚洲天堂热| 99爱这里只有精品免费视频| 婷婷伊人无码| 三级片AAA久久久AAA久久久AAA | 强辱丰满人妻HD中文字幕| 亚洲丁香五月美女| 91九色PORNY大屁股| 六月丁AV| 久9久成人精品视频| 玖玖爱综合网| 天天草人人摸| 激情五月天婷婷| 夜夜做夜夜愛| 色五月婷婷伊人| 一区二区乱码视频| 丁香色五月婷婷17C| 国产人妻777人伦精品HD| 天天拍久久| 亚洲视频在线网| 成片免费观看视频大全| 99欧美| 俺去也五月| 色色免费网战视频| 婷婷五月丁香欧洲| 色色色色五月| 欧美97p| www.色色com| 99自拍视频网站| 久久精品国产色| 99精日本久久| 嫩BBB搡BBB搡BBB四川| 九九Av| 色99在线| 狠狠干天天日| 狠狠搞五月天| 国产婷婷婷| 五月综合色| 激情四射五月天偷偷看婷婷| 九九婷婷激情综合网| 亚洲操操操| 人人爽天天莫| 精品综合网在线| 色播开心网| 草操网| 1024在线视频| 色五月成人| 欧美婷| 欧美乱码国产一级A片| 狠狠色婷婷| A网在线欧洲| 9191avse| 2025超碰| 99热综合色图| 色婷綜合网| 婷婷五月天久久综合88| 五月综合视频| 丁香午夜天| 日日骑夜夜撸| 热久久这里只有三级视频| 五月婷婷啪啪网| 天天干天天 亚洲| 久久综合首页| 五月丁香狠狠爱| 激情五月婷婷| 九九一综合精品| 99啪啪网| 怎么样可以看免费的一级av| 少妇人妻人伦A片| 日日爽日日操| 婷婷激情人妻| 色爱综合网| www热久久yy9| 国产丁香五月天婷婷| 色婷婷色| 最近免费中文字幕大全高清大全1 欧美丰满熟妇BBB久久久 | 久久久ww| 五月天色网站| 综合色99| 97操男人的天堂| 天天做夜夜爽| 99综合视频| 精品视频99看在线视频| 99热超碰天堂网| 欧美私人家庭影院| 丁五月激情视频免费| 这里只精品| 丁香六月婷婷色播| 玩熟女五十AV一二三区| 爽tv | 人妻久久久久久久久妻久久久久| 成人网站免费在线播放| Www.sesese丁香| 丁香色色网| 色深爱五月| 久久国产性爱A V| 婷婷五月色情| 色欧美一级| 色色吧综合| 99热99热在线| 午夜青草资源| 91色五月| 日韩AC在线免费观看| www久久久| 99久在线精品99re8热| 色婷婷婷综合五月天| 99丁香五月婷| 久久九九99.www| 日日夜夜天天| 大天天伊人| 五月天激情av| 精品99久久久久成人网站免费| 任你操精品免费| httpwww色com日本| 少妇人妻人伦A片| 国产午夜精品一区二区三区嫩草| 日本在线噜噜| 九九热视频网站| 久久五月激情综合| 1024你懂的欧美曰韩| 国产又色又爽又黄又免费| 亚洲天堂爱爱| 五月天播播| 思思精品久久艹| 天天做天天视天天谢| 婷婷五月丁香超碰| 大香蕉视频99| 久久99综合| 五月婷婷在线视频| 婷婷人人操| 色综合色色色| 深爱五月婷| 日操五月婷| 五月婷婷高清| 丁香五月综合婷婷| 97热九九| 97婷婷丁香五月综合| 九九99九九精品免费 | 99re久热只有精品6在线直播.com| 久久久婷丁香五月| 四川BBB搡BBB搡多人乱亂| 日本精品99| 色在线99| 五月天色综合| 久草五月天| 天天热夜夜操| 色色日韩无码| AAAA亚洲| 97亚洲色 torrent magnet| 人妻激情综合| 久久最新色| 9超碰在线| 1024久婷| 综合久久十| www.金莲av| 91久久精品国产91性色TV| 丁香在线视频| 色婷婷狠狠| 丁香成人五月天| 激情性爱五月| 色激情网| 丁香五月天堂| 九九色色| 色墦五月丁香| 丁香五月电影| 操操啪| 色婷婷成人色网| 欧美日韩成人在线| 丁香五月婷婷激情网| 99噜噜| 国产色网站| 99a级片| 狠狠色噜噜狠狠| 91九色欧美| 日本色色网站| 97碰碰在线看视频免费| 天天肏高清在线| 日韩精品一品二区三区的使用体验| 性爱视频久久| 天天爽天天| 五月婷婷丁香| 精品影院| 开心五月综合激情网| 人人妻人人澡| 色婷婷九月| 99热这里只有精品22| 玖玖热视频| 日本狠狠色| 国产精品a无线| 日韩成人免费电影| 91狠狠色丁香婷婷综合久久狠丁香综合久久精品 | 亚洲另类AV| 美国天天操无码| 第五婷婷伊人丁香| 夜夜大香蕉婷婷丁香| 人妻久热| 欧美色婷婷| 丁香5月激情网| 79亚洲精品少妇| 狠狠久久婷五月综合色| 欧美综合丁香网| 日韩久久这里只有精品| 人人草人人爱手机视频看看| 亚洲激情.com| 天天色天天操天天射| 五月婷婷综合在线| 久久五月天色婷婷| 激情五月婷婷综合| 亚洲精品久久久久久久久久吃药| 超碰在线91| 北条麻妃伊人| 伊人三级激情| 综合久久综合久久| 五月婷婷在线视频免费观看| 五月婷免费视频久久久| 色婷婷综合综合网| 色狠狠色噜噜AV天堂五区| 日日日日日| 久久综合55| 欧美超级视频97| 婷婷精品视频| 丁香成人综合| 色色综合网络| 大香蕉久热| 久久a热| 九九热123| 97在线日本| 99人妻碰碰碰久久久久禁片| 日韩欧美一区二区三区四区| 深爱开心激情网| 99精品福利视频| 五夜丁香| 超pen个人视频97| 97日本在线播放| 成人资源在线| 国产日产成人亚洲欧美国产VA| 综合五月亭亭9| Www.狠狠| 久久久久久综合88| 中文成人在线| 婷婷伊人视婷婷婷| 99ri在线视频| 成人狠狠成人狠狠成人狠狠成人狠狠| 日日爽日日| 狠狠综合网| 1024人妻| 97婷婷在线| 久久这里只有国产| 色99欧洲色19| 色情五月天丁香社区| 丰满少妇乱A片无码| 色色图五月天| 色五月综合| 婷婷五月精品在线| 婷婷综合五月天| 综合激情视频| 五月丁香 狠狠爱| 色综合久久99色| 亚洲婷婷丁香五月亚洲| 日韩AAAAA| 六月激情婷婷| 久久密臀婷婷| 99久久久久| 天天成人综合视频| 免费啪啪亚州视频| 99在线精品观看99| 偷偷操99| 99热这只有| 国产这里只有精品| 五月婷婷丁香| 亚洲精品网址| 激情婷婷内射| 五月天六月色| 影音先锋女人AA鲁色资源| 狠狠色噜噜狠狠亚洲A∨| 99自拍视频在线观看| 色五月视频,小说| 精品久久9| 五婷婷综合网| 亚洲色碰| 亚洲丁香五月| 久久色情| 伊人影院久久网| 亚洲激情亚洲激情| 五月丁香六月婷婷无码| 操一操干一干| 操逼国产91| 亚洲欧洲色色| 成人性做爰AAA片免费看不忠| 国产精品国产成人国产三级| 99热欧美偷拍| 丁香五月婷婷激情123| 久超超碰| 欧美A片在线视频免费观看| 99热精品在线播放| 婷婷丁香色无五月| 亚洲乱码日产精品BD| 日韩无码乱轮| 日韩六十路91性交电影| 青青草轻轻操| 影音先锋AV资源男人站| 精品五月视频婷婷在线观看| 淑女丝袜bi操逼123| www.婷婷| 色欲九区| 天天摸人人摸| 国产欧美性成人精品午夜| 久热精品9999| 五月丁香久久久日婷婷久久婷婷日| 天天狠狠六月婷丁香影院| 91狠狠综合久久| 丝袜激情网| 亚洲色五月天在线| 久久丁香五月| 91色欲综合| 六月丁香婷婷网| 97色在线视频| 香蕉99网| 五月丁香激情婷婷综合字幕| 99色热视频| 97久久超视频| 五月天婷婷丁香视频| 99超级碰免费视频| 人人干女人| 婷婷情色激情| 欧美操人| 欧洲99视频在线| 国产精品天天狠天天看| 韩国不卡AC视频| 五月婷婷久久激情 | 色9999综合久久| 婷婷美女精品视频| 黄色AV日韩| 偷拍91九色| 五月天婷婷视频30| 91中文在线| 丁香五月网络网络| 五月丁香久人妻中文| 吾爱AV导航| 婷婷五月天com| 夜夜操狠狠操| 久久人操| 丁香婷婷综合激情五月色| 日本三级第一页| 深爱开心激情网| 伊人五月天在线| 伊人久久大香线蕉av最新| 99久久极情精品一区| 激情5月婷婷| 日日骑夜夜撸| 大香蕉五月丁香| 99乱视频| 婷婷性福五月天| 99在线综合视频| 热久久视频99| 狠狠干综合| 五月丁香久久综合| 91狠狠色丁香婷婷综合久久精品| 9l视频自拍9l视频自拍九色学生| 婷婷六月天激情| 色八戒操婷婷| 色六月视频| 激情小说五月天| 激情五月天黄色小说| 91ncm视频| 丁香婷婷色情| 五月天婷婷成人网| 99超碰在线免费| 婷婷五月天精品| 一级片无码| 丁香五月天啪啪激情综和网| 能看的AV| 99这里只有精品在线| 亚洲天堂色色| 97五月天婷婷午夜| 99热66| 久久精品性爱视频,| 色五月激情网| 五月丁香婷婷综合| 六月激情婷婷| 婷婷五月天色色| 五月婷色色| 97操碰视频| 久9热视频| 人人操插| 色婷天天| 激情五月天视频| 色色免费网站| 99色综合| 激情五月天电影| 色综合色婷婷色伊人| 99激情视频| 亚洲成人色五月天| 无码成人AAAAA毛片AI换脸| 婷婷激情五月天激情在线| 国产毛片精品一区二区色欲黄A片| 久久最新色色色| 成人国产欧美大片一区| 性 色 婷婷| 国产无遮挡又黄又爽免费网站| 激情婷婷综合| 五月婷婷综合激情| 台湾佬天天日丁香婷婷五月天| 丁香久久在线| 免费观看欧美成人AA片爱我多深 | 亚洲人人96@| 欧洲第一无人区观看| 五月天激情Av| 九色视频九色九色91jiuseshipin| 99视频一区| 日韩啪啪自拍| 五月丁香亭亭| 一区二区免费看| 成人午夜无码视频| 色色99色色| 久热伊人| 婷婷色成人| 丁香婷婷五月人体| 色婷婷激情四射视频| 91综合国免费久入| 五月激情六月丁香| 五月天婷婷开心| 99免费在线视频| 五月丁香六月婷婷的女人| 2013AV天堂| 99热网址| 五月丁香婷婷网网网网| 亚州美女| 婷婷视频在线| 久久 无毛。| 97在线刺激| 综合在线网| 97久久人人人干| 俺也高清无码高清视频| 午夜福利8055| 玖玖99免费视频| site:xiongshengzz.com| 中文成人在线| 另类五月激情| 国产资源在线视频| 色婷婷影视| 亚洲六月婷| 日韩操啪| 99ri国产在线| 99热这里有精品6| 亚洲成AV人片在线观看| 激情伊人五月天| 网色99| 国产精产国品一二三在观看| 2025年最新亚洲在线欧美| 五月丁香婷婷成人版| 99热婷婷| 丁香五月亚洲无码| 丁香激情五月少妇| 九九99精品| 色五月婷婷五月久久| 色丁香五月婷婷综合久久| 五月天停婷基地| 99高级会所久久| 色色97丁香婷婷五月天| 97超碰在线免费观看| 思思99精品视频在线观看| 665566 无码| 啪啪99| oVV4WIB3vFi8D| 狠狠干狠狠操狠狠爱| 日韩九区| www.五月激情红色| 久久hd| 少妇高潮呻吟A片免费看软件| 思思热久久久在线| 欧美 日韩 成人 在线| 一起草av| 五月激情六月婷婷| 丁香五月天堂网| 精品二区| 五月天婷婷基地综合网| 天天噪夜夜爽| 91岛国片| 中文人妻AV久久人妻18| 五月天激情婷婷久久| www.日本久久videos| 雪千夏麻豆| 婷婷五月天综合久久| 色婷婷五月天激情综合| 激情图片99| 国产露脸150部国语对白| 俺去也五月| 人妻性爱av网站| 九月婷婷在线观看| 色欲色香综合网| 五月激情久久综合网| 婷婷久久网| 色99久草在线| 996热| 99在线精品在线视频| 婷婷色亚洲| 91综合网| 五月丁香婷婷综合久久| 五月婷色啪| www九九热| 丁香五月婷婷操逼| 天天色宗合| 色婷婷丁香五月天在线观看| 99久久精彩视频。| 97艹| 人人操五月天| 日本狠狠干| 精品九九视频| 亚韩在线视频| 五月激情综合婷婷| 久久ab| 五月婷婷色五月| 激情五月天无码| 亚洲av综合网| 五月婷婷黄网站大全| 色色色色色色网站| 五月丁香性| 91dy.av| 色婷婷综合网站| 婷婷伊人綜合中文| 俺去也五月| 五月丁香久| 婷婷情色激情| 久热2025无码| 伊人婷婷大香蕉| 91精品刘玥| 激情综合网激情五月天| 色婷婷婷婷五月天| 激情五月无码| 色人久久| 亚洲热久| 五月丁香综合精品欧美| 五月天色丁香| 人人摸人人澡人人| 激情综合色五月丁香六月亚洲| 婷五月丁香俺| 久一网站| 九久热| 久久97| 久久久久久欧美精品se一二三四| 丁香五月天狠狠| 秋霞网在线观看理论91| 99爱爱| 五月天停停日日| 日本三级第一页| 色偷偷AV亚洲男人的天堂| 人人操插| 五月婷婷丁香俺日污视频| 99秘 在线| 激情深爱综合| 婷婷五月综合社区| 五月婷婷丁香大香蕉| 综合AV网| 精品久久人妻| 五月婷婷啪啪啪| www.婷婷| 79色色色色| 伊人丁香婷婷东京| av婷婷丁香 六月| 任我肏| 第四色五月婷婷| 欲求不满的人妻| 精品二区| 国产亚洲精品久久久久久郑州| 色五月婷婷久久| 亚洲爆乳无码精品AAA片蜜桃 | 亚洲精品久久久无码| 99热精品在线播放| 热99精品视频五月| 色香欲综合| 久久这里有精品视频| 婷婷婷五月天最新综合你懂的| 可以免费观看的av网址| 九九综合伊人| 婷婷99狠狠躁天天躁中文| 亚洲天堂青草| 日本44久久在线| 五月综合久久| 亚洲视频一区| www色五月| 九九Av| 久久婷婷成人| 亚洲激情综| 日韩综合久| 婷婷五月成人| 日本高清综合网五月丁香| 激情五月四色| 天天夜天天色天天| 色色婷婷综合网| 五月婷综合性中心| 五月天婷婷色紫薇阁| 天天日夜夜高潮| 天天做天天爱天天摸| 五月丁香成人网| 丁香五月天啪啪| 亚洲免费看片| 五月丁香免费视频| 4399在线日本A片| 爱操人妻| 狠狠干综合网| 另类激情五| 欧美色九| 国产97色在线| 五月天婷婷綜合院| 一区二区乱码视频| 久久五月天视频| 激情av在线| 久久3p| 91偷拍视频| 日韩九区| 99热这里在线精品| 成人五月天在线观看| 97久久草草超级碰碰碰| 日韩另类| 五月丁香六月综合情在线观看| 丁香婷婷激情综合五月激情| 婷婷99狠狠| 天天插天天插天天日| 丁香五月 综合| 99久久国产成人精品| 一本久久亚洲五月婷婷| 中文字幕簧片| 丁香六月爱综合| 丁香婷在线| 99热6精品| 热思思| 五月丁香婷婷AV| 女BBBB槡BBBB槡BBBB| 97色97干| 婷婷射丁香| 亚洲五月花| 国产在线aaa片一区二区99| 国产看真人毛片爱做A片| 99精品在线| 五月婷婷欧洲| 九九九九中文字幕| 综合色网站| 99久久久久| 久久亚洲精品成人无码网站导航| 婷婷在线操| 开心五月综合| 六月婷婷开心| 欧美乱大交XXXXX潮喷l头像| 五月丁香91|