Contents
2022
Volume: 51 Issue 11
37 Article(s)

Export citation format
Phase retrieval algorithms: principles, developments and applications (invited)
Aiye Wang, An Pan, Caiwen Ma, and Baoli Yao
Because the phase contains more information about the field in contrast to the amplitude, phase measurement has always been a hot topic in many branches of modern science and engineering. Within the visible range of electromagnetic wave, it is quite difficult to directly obtain phase information by the existing photode
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220402 (2022)
[in Chinese]
Zhenxu Bai, Hui Chen, Yunpeng Cai, Jie Ding, Yaoyao Qi, Bingzheng Yan, Can Cui, Yulei Wang, and Zhiwei Lv
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220660 (2022)
Infrared Technology and Application
Multi-drop attention residual infrared image denoising network based on guided filtering
Jun Zhang, Biao Zhu, Yuzhen Shen, and Peng Zhang
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220060 (2022)
Research on ROI readout technology of ROIC
Changkun Cui, Nan Chen, Shengyou Zhong, Juan Zhang, and Libin Yao
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220100 (2022)
Simulation of airborne terminal infrared countermeasure operational effectiveness
Yang Bai, Cheng Zhang, Boyu Wang, Shichuan Li, and Bang Ma
In order to study the operational effectiveness of aircraft terminal infrared countermeasure, the infrared countermeasure simulation system is established to model and simulate the aircraft infrared characteristics, decoy jamming characteristics and laser directional jamming characteristics respectively. The infrared c
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220105 (2022)
Infrared aerial image overhead wire identification algorithm based on improved Deeplabv3+
Zhaohui Li, and Gezi Kou
With the continuous expansion of the scale of the national grid, overhead conductors, as an important component of the power system, have become extremely important to its regular inspection. At the same time, with the opening of the low-altitude flight field, the identification of overhead conductors has also become e
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220112 (2022)
Lasers & Laser Optics
Real time monitoring of cooling rate in laser metal-wire forming process under infrared thermography
Shuanjun Song, Chenghong Qiu, Wei Xu, Xiaofei Ren, and Anli Zhang
Laser metal-wire additive manufacturing technology is an integrated manufacturing technology with high forming accuracy and small machining allowance. However, due to its non-equilibrium solidification, complex heat, mass transfer and other physical phenomena, the cooling rate is difficult to be monitored by convention
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220074 (2022)
Gaussian decomposition ranging method for laser fuze under cloud and fog interference conditions
Xue Liu, Hong Gu, Haohui Chen, Yong Zhang, Zhen Yang, and Jianlong Zhang
Under the influence of cloud and fog, pulsed laser fuze has the problems of high false alarm probability and poor ranging accuracy. These problems restrict the all-weather work of laser fuze. In order to reduce the influence of cloud and fog on the full-waveform sampling laser fuze, the paper proposes an echo pulse pro
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220090 (2022)
Research on satellite laser ranging at pulse repetition frequency of 100 kHz
Shaoyu Cheng, Mingliang Long, Haifeng Zhang, Zhibo Wu, Si Qin, and Zhongping Zhang
The relationship between the number of satellite laser ranging (SLR) echoes and the repetition rate, laser pulse energy and power are analyzed, it shows that under the same laser echoes, the higher the repetition rate, the lower the laser pulse energy and laser average power are required. Meanwhile, single-shot accurac
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220121 (2022)
Materials & Thin Films
Ultraviolet photocatalytic-vibrated composite polishing
Baojun Yu, Zhuoyi Guo, Faxiang Lu, Yan Gu, and Jieqiong Lin
In order to meet the different requirements of the industrial field, the polishing process of silicon carbide (SiC) ceramic with an ultra-smooth surface and no surface damage is studied, and a new method of ultraviolet photocatalytic-vibrated composite polishing is proposed. Based on the theory of ultraviolet photocata
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220138 (2022)
Optical Communication and Sensing
Optimization of routing and wavelength optimization algorithm for optical transport network based on reinforcement learning
Yinghui Kong, Jiazhi Yang, Huisheng Gao, and Zhengwei Hu
Aiming at the routing and wavelength problems of dynamic services in optical transport network, a deep routing wavelength assignment algorithm based on reinforcement learning is proposed. The algorithm is based on a software defined network architecture, flexibly adjusts and controls the optical transport network throu
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220084 (2022)
Development and installation of fiber optic interferometric seafloor seismic and tsunami monitoring system
Miao Yu, Yutong He, Yue Yang, Chongfu Zhang, Chongjian Wu, Liyao Cheng, and Qian Kong
A seafloor seismic and tsunami monitoring system based on fiber optic interferometric technology was developed and installed in the nearby waters at China's State Oceanic Administration’s (SOA’s) Wuchang (Hainan Province, China) monitoring site. The developed tri-component version of fiber optic interferometric sei
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220111 (2022)
Optical Design
Wavefront aberration sensitivity and integrated analysis method for spaceborne camera
Zhipeng Xue, Shanshan Cong, Meijiao Sun, Lei Zhang, Jinquan Liu, and Xin Yu
Aiming at a new type of single cantilever main support structure of space camera, both wave aberration sensitivity model and integrated simulation analysis are proposed to calculate the camera's wave aberration in the lightweight design of optomechanical structure, so as to ensure the imaging quality under mechanic
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220109 (2022)
New lightweight design method and application of main support structure in airborne infrared imaging system
Yanwei Li, Longhai Yin, Yulong Li, Xinwang Xie, Jingguo Zhang, and Hongbo Xie
Due to the limited load of aircraft, weight was always the key index in the structural design of airborne imaging system. As the main load bearing structure of the optical system in the airborne imaging system, the main support structure must be lightweight. However, the previous lightweight design methods for the main
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220232 (2022)
Spin-dependent intensity-adjustable phase-change metalenses
Jie Li, Ximin Tian, Junwei Xu, Ting Wu, Tingfeng Chen, and Jinzhi Kuang
Metasurfaces, artificial subwavelength planar structures based on anisotropic units, manifest an unparalleled ability in manipulating the amplitude, phase and polarization of the incident electromagnetic (EM) waves, thus enabling arbitrary modulation of wavefront. As of the most metasurface embodiments, metalenses have
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220398 (2022)
Design of long-wave infrared fisheye staring optical system
Jiyan Zhang, Liting Sun, and Teng Qin
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220430 (2022)
Optical Fabrication
Research on inheritance reconfiguration scheduling of virtual manufacturing cell based on improved genetic algorithm
Lin Zhao, Aimin Wang, Kunsheng Wang, and Chenglong Yu
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220510 (2022)
Photoelectric Measurement
High-precision optical measurement method based on discrete path and splicing
Zhengxiang Shen, Xu Wang, and Jun Yu
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20210144 (2022)
Fringe structured light 3D reconstruction based on virtual binocular
Xinjun Zhu, Linpeng Hou, Limei Song, Mengkai Yuan, Hongyi Wang, and Zhichao Wu
In order to solve such problems as synchronization, high cost and others in traditional binocular fringe structured light 3D reconstruction, a virtual binocular fringe structured light 3D reconstruction method based on a single camera is proposed. The virtual binocular fringe structured light 3D reconstruction system w
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20210955 (2022)
Space-based identification method for space debris based on trajectory consistency detection
Yunfan Lei, Long Wang, Hongjun Zhong, Hui Zhang, and Yanpeng Wu
Aiming at on-orbit correlation between space-based observations and cataloging of space debris, observation model of space-based optical cameras for debris was established, the impact of on-orbit environment on observations was analyzed, furthermore, a space debris identification method based on trajectory consistency
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220076 (2022)
Fringe projection profilometry for 3D measurement of objects with different depth of fields
Rong Wu, Shili Zhao, Yang Zhao, and Fengyun Xie
Fringe projection profilometry (FPP) was widely used in defect detection, reverse engineering, computer vision and other fields due to its non-contact and high measurement accuracy. However, traditional FPP can only obtain the 3D profile of the measured object within limited depth of field in a single measurement, and
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220088 (2022)
Compressed spectral measurement technology based on coding of spectrum domain
Yijing Xu, Zhipeng Wu, and Qilong Wang
Spectral detection technology has a wide range of applications in biomedicine, national defense, security check, production monitoring, geological survey, material analysis, environmental protection, disaster reduction and so on. However, due to the existing detectors and application technology conditions, the flexibil
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220093 (2022)
Research on repetition rate difference asynchronous locking technique of dual-comb
Siju Rong, Xindu Chen, Jinghua Sun, Lingliang Mei, Hanze Bai, Peng He, and Bin Lian
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220108 (2022)
Thermal control design and simulation of micro star sensor
Jianwei Lv, Linghua Wang, Sheng Su, Xin Song, Xin Liu, and Boyang Song
In order to ensure the normal operation of the star sensor during the on-orbit mission of the application platform, it needs to be thermally designed. First, a process of thermal analysis and optimization was proposed, which combined with the conditions of the external heat flow, installation layout and working mode of
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220116 (2022)
Research on focal length calibration method of oblique installation collimator
Tao Wang, Liude Tian, Jianke Zhao, Yan Zhou, Kewei E, Kai Liu, Shangkuo Liu, Fei Liu, Lihong Yang, Yining Liu, Xun Xue, and Huaixue Zhao
When the collimator is placed horizontally and installed obliquely, its optical parameters will be greatly different due to different stress states. In order to accurately evaluate the focal length of collimator, according to the mapping relationship between the point on the focal plane of the collimator and the angle
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220124 (2022)
Application of Michelson interferometer in phase coherent imaging measurement system
Jinqiao Sha, Junyi Yang, Junliu Fan, and Jun Wang
In the conventional 4f phase coherent imaging measurement technology, phase objects were used to convert the phase change generated by the measured material into a directly observable amplitude change to achieve the measurement of the nonlinear refractive index of the material. However, the thickness of the phase objec
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220396 (2022)
Special Issue-Fluorescence Microscopy: Techniques and Applications
Research on field-enhanced planar-Airy light-sheet microscopy (invited)
Hongwei Li, Hongyu Chen, Tianze Shi, Rong Zhao, and Pengfei Liu
Light-sheet microscopy is a biological imaging technology that has been studied a lot in recent years. Compared with traditional confocal laser scanning microscopy, light-sheet microscopy can achieve rapid volume imaging with low phototoxicity. The illumination beam of light-sheet microscope can choose Gaussian beam or
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220354 (2022)
Progress and application of near-infrared II confocal microscopy (invited)
Yifei Li, Mubin He, Tianxiang Wu, Jing Zhou, Zhe Feng, and Jun Qian
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220494 (2022)
Advances in biological imaging applications of fluorescent gold nanoclusters (invited)
Wencheng Zhong, Wenfeng Guo, and Li Shang
In recent years, due to the unique advantages such as excellent fluorescence properties, ultra-small size, precise chemical structure and good biocompatibility, gold nanoclusters (AuNCs) have become a kind of emerging fluorescent nanoprobe of great concern. In order to promote the application of AuNCs in fluorescence i
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220527 (2022)
Performance enhancement of fluorescence microscopy by using deep learning (invited)
Zihan Xiong, Liangfeng Song, Xin Liu, Chao Zuo, and Peng Gao
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220536 (2022)
Applications of photoacoustic technology in brain tissue imaging (invited)
Zhenhui Zhang, Erqi Wang, and Yujiao Shi
Photoacoustic imaging technology based on laser-induced ultrasound mechanism combines the high contrast of optical imaging and the deep penetration of ultrasound imaging, which can reflect the distribution of endogenous absorbents in living organisms in a label-free and non-invasive way, especially suitable for real-ti
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220541 (2022)
Research progress on fast 3D fluorescence microscopic imaging (invited)
Tianyu Yan, Ying He, Xinyu Wang, Xinyi Xu, Hui Xie, and Xueli Chen
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220546 (2022)
Advances of large field-of-view two-photon microscopy system (invited)
Jing Yao, Zhipeng Yu, Yufeng Gao, Shiwei Ye, Wei Zheng, and Puxiang Lai
Two-photon microscopy (TPM) imaging has the characteristics of high resolution, natural chromatography capability and large penetration depth, and plays an important role in the imaging of living animals. How to enlarge the field-of-view (FOV) of TPM while maintaining the high resolution to monitor large-scale dynamic
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220550 (2022)
Advances in live cell imaging technology of CRISPR/Cas9 system (invited)
Yue Kang, Xueyao Liao, Xiangyu Tan, Ping Guo, and Xun Tian
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220597 (2022)
Application of super-resolution microscopy in the study of organelle interactions (invited)
Taiqiang Dai, Ye Gao, Ying Ma, Bolei Cai, Fuwei Liu, Boling He, Jie Yu, Yan Hou, Peng Gao, and Liang Kong
Observing dynamic interaction between organelles and analyzing the law of action is of great significance for revealing the mechanism behind the phenomenon of physiological and pathological processes. Due to the limitation of the optical diffraction determined by wavelength and aperture, traditional optical microscopes
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220622 (2022)
Discussion on spatial resolution of microscopic imaging system (invited)
Shipei Dang, Runze Li, Meiling Zhou, Jia Qian, Dan Dan, Xianghua Yu, and Baoli Yao
Infrared and Laser Engineering
  • Publication Date: Nov. 25, 2022
  • Vol. 51, Issue 11, 20220735 (2022)