Contents
2021
Volume: 58 Issue 18
28 Article(s)

Export citation format
Imaging Systems
The Introduction of Feature Issue on Computational Imaging
Xiaopeng Shao, Xiangyang Ji, Chao Zuo, and Xiaobo Qu
Laser & Optoelectronics Progress
  • Publication Date: Sep. 15, 2021
  • Vol. 58, Issue 18, 1811000 (2021)
Progress and Prospect of Scattering Imaging
Xin Jin, Xiaoyu Wang, Dongyu Du, Yihui Fan, and Xiangyang Ji
Laser & Optoelectronics Progress
  • Publication Date: Aug. 31, 2021
  • Vol. 58, Issue 18, 1811002 (2021)
Optical-Field Coherence Measurement and Its Applications in Computational Imaging
Runnan Zhang, Zewei Cai, Jiasong Sun, Linpeng Lu, Haitao Guan, Yan Hu, Bowen Wang, Ning Zhou, Qian Chen, and Chao Zuo
The coherence of optical field is an important physical property that should be quantified to produce significant interference phenomenon. Although high spatial and temporal coherence lasers have become an essential tool in traditional interferometry and holography, in many emerging computational imaging fields (such a
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811003 (2021)
Incoherent Correlation Digital Holography: Principle, Development, and Applications
Yuhong Wan, Chao Liu, Tianlong Man, Mengjing Jian, Teng Ma, Qin Zhang, and Yi Qin
According to D. Gabor’s proposal, holography is a coherent imaging technique where the object’s three-dimensional information is first recorded and then reconstructed from the hologram that obtained through the interference of object and reference beams. The coherence of light originating from any two points on the obj
Laser & Optoelectronics Progress
  • Publication Date: Sep. 01, 2021
  • Vol. 58, Issue 18, 1811004 (2021)
Partially Coherent Illumination-Based Digital Holographic Microscopy and Its Applications
Yang Wang, Meiling Zhang, Yu Wang, Kai Wen, Kequn Zhuo, Rongli Guo, and Peng Gao
The traditional digital holographic microscopy (DHM) usually adopts highly coherent lasers as an illumination source. Although the hologram has high contrast, the coherent noise induced by the coherent lasers reduces the signal-to-noise ratio of the reconstructed image. Partially coherent illumination-based DHM (PCI-DH
Laser & Optoelectronics Progress
  • Publication Date: Aug. 31, 2021
  • Vol. 58, Issue 18, 1811005 (2021)
Application of Deep Learning in Digital Holographic Microscopy
Zhang Meng, Hao Ding, Shouping Nie, Jun Ma, and Caojin Yuan
Digital holographic microscopy (DHM) has attracted attention in the fields of biological imaging and materials science due to its advantages in high-precision quantitative phase imaging. However, the existence of conjugate images, the problem of phase wrapping, and the limited resolution have always hindered the wide a
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811006 (2021)
Deep Learning Based Fluorescence Microscopy Imaging Technologies and Applications
Haoyu Li, Liying Qu, Zijie Hua, Xinwei Wang, Weisong Zhao, and Jian Liu
In recent years, fluorescence microscopy has been commonly applied in various fields of scientific research, such as biophysics, neuroscience, cell biology, and molecular biology, owing to its specificity, high contrast, and high signal-to-noise ratio. However, traditional fluorescence microscopes have limitations rega
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811007 (2021)
Progress in Computational Fourier Microscopy
Jingang Zhong, Manhong Yao, and Junzheng Peng
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811009 (2021)
Two Key Technologies Influencing on Computational Ghost Imaging Quality
Rongke Gao, Lusha Yan, Chenxiang Xu, Dekui Li, and Zhongyi Guo
Computational imaging is an imaging technology that not only relies on optical physical devices, but also relies on optical modulation and reconstruction algorithm. It provides new ideas for breaking through the limitations of traditional imaging systems in terms of temporal and spatial resolution and detection sensiti
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811011 (2021)
Multi-Camera System: Imaging Enhancement and Application
Peiyao Guo, Zhiyuan Pu, and Zhan Ma
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811013 (2021)
Stereo Image Super-Resolution: A Survey
Yingqian Wang, Longguang Wang, Zhengyu Liang, Wei An, and Jungang Yang
Laser & Optoelectronics Progress
  • Publication Date: Aug. 27, 2021
  • Vol. 58, Issue 18, 1811014 (2021)
Advances in Diffused Polarization-Based Three-Dimensional Imaging Technology
Fei Liu, Mingyu Yan, Xuan Li, Pingli Han, Yanyan Liu, and Xiaopeng Shao
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811015 (2021)
Progress in High Accurate Angle Measurement Technology of Long-Distance Target Based on Computational Interferometry
Lei Dong, Yuxiang Ruan, Jianli Wang, Bin Wang, Hongzhuang Li, Peng Guo, Yuanhao Wu, Shan Jiang, Shufen Zhang, and Peifeng Wei
The angle measurement technique based on the centroid positioning principle of the traditional optical imaging system generally has an upper limit of the measurement accuracy, it is about 1/100 of a pixel. Thus, in order to improve the angle measurement accuracy, cameras with the longer lens focal length and the larger
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811016 (2021)
Texture Mapping of 3D Point Clouds with Freely Recorded 2D Images
Zhuolong Xiang, Qican Zhang, and Chaowen Chen
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811018 (2021)
Study on Numerical Focusing Compressive Holographic Imaging
Yiyi Zhang, Zhengzhong Huang, Feng Yang, Shangzhong Jin, and Liangcai Cao
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811019 (2021)
Experimental Study on Imaging Through Scattering Medium in Natural Scene
Jietao Liu, Wei Li, Yuxiang Wu, Shunfu He, Mingrui Xia, Wenhai Liang, Zengzeng Fan, Yangfan Sun, and Xiaopeng Shao
Scattering imaging is the frontier and hotspot in the field of optical computational imaging field. Speckle autocorrelation imaging has attracted increasingly attention due to its efficient, fast, and noninvasive characteristics. The physical basis of speckle autocorrelation imaging is optical memory effect, and the ma
Laser & Optoelectronics Progress
  • Publication Date: Aug. 27, 2021
  • Vol. 58, Issue 18, 1811022 (2021)
Polarization Microscopy Imaging of Biological Cells Based on Mueller Matrix
Ruijuan Gao, Chunhua Wang, Jinxing Ning, Keshuai Wu, and Xiang Gu
Laser & Optoelectronics Progress
  • Publication Date: Aug. 27, 2021
  • Vol. 58, Issue 18, 1811023 (2021)
Extracting Fingerprints from Surface of Curved Objects Using Computational Light-Field Imaging
Xingjun Liu, and Yanting Lu
Laser & Optoelectronics Progress
  • Publication Date: Aug. 23, 2021
  • Vol. 58, Issue 18, 1811024 (2021)
High-Resolution and Large Field-of-View Computational Imaging Method
Yun Su, Jing Xu, Yue Yu, Teli Xi, Shijie Wei, and Xiaopeng Shao
High-resolution and large field-of-view imaging allows aerospace remote sensing to perform finer perception over a wider range. Based on the computational imaging basic principle, this paper proposes a suboptimal computational imaging design method with a large field-of-view. The imaging process, is divided into two co
Laser & Optoelectronics Progress
  • Publication Date: Sep. 03, 2021
  • Vol. 58, Issue 18, 1811025 (2021)
Evaluation of Distributed Optoelectronic System Properties
Jiangyong Li, Miaoyan Wang, and Chang Ben
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811026 (2021)
High-Resolution Imaging Technology for Large F-Numbers Based on Pixel Coding
Qiusha Shan, Wei Hao, Zhaohui Liu, Liang Zhou, and Rongli Chen
Laser & Optoelectronics Progress
  • Publication Date: Sep. 02, 2021
  • Vol. 58, Issue 18, 1811027 (2021)