Author Affiliations
Abstract
1 Joint International Research Laboratory of Information Display and Visualization, School of Electronic Science and Engineering, Southeast University, Nanjing 210096, China
2 Department of Bioengineering, University of California, Los Angeles, California 90095, USA
3 Shanghai Aerospace Electronic Technology Institute, Shanghai 201109, China
Phase imaging always deals with the problem of phase invisibility when capturing objects with existing light sensors. However, there is a demand for multiplane full intensity measurements and iterative propagation process or reliance on reference in most conventional approaches. In this paper, we present an end-to-end compressible phase imaging method based on deep neural networks, which can implement phase estimation using only binary measurements. A thin diffuser as a preprocessor is placed in front of the image sensor to implicitly encode the incoming wavefront information into the distortion and local variation of the generated speckles. Through the trained network, the phase profile of the object can be extracted from the discrete grains distributed in the low-bit-depth pattern. Our experiments demonstrate the faithful reconstruction with reasonable quality utilizing a single binary pattern and verify the high redundancy of the information in the intensity measurement for phase recovery. In addition to the advantages of efficiency and simplicity compared to now available imaging methods, our model provides significant compressibility for imaging data and can therefore facilitate the low-cost detection and efficient data transmission.
Photonics Research
2020, 8(10): 10001624
作者单位
摘要
1 华中科技大学武汉光电国家实验室, 湖北 武汉 430074
2 华中科技大学光学与电子信息学院, 湖北 武汉 430074
设计了一种工作在太赫兹波段的柱透镜,并且使用三维(3D)打印技术制作出了样品。对样品进行了测试,将测试结果与数值仿真结果以及商用太赫兹柱透镜的测试结果进行了对比。结果表明,两种柱透镜的焦距均在100 mm左右,与仿真结果相符,且打印的柱透镜在不同传播距离下的光斑半峰全宽与商用柱透镜的很接近,证明了3D打印技术可以用于制作太赫兹波段的柱透镜等光学器件。
激光技术 太赫兹 柱透镜 3D打印 焦距 
激光与光电子学进展
2018, 55(1): 011415
Author Affiliations
Abstract
Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800
The concept of the beam propagation factor M2 is extended for chromatic laser beams. The definition of the beam propagation factor can be generalized with the weighted effective wavelength. Using the new definition of factor M2, the propagation of chromatic beams can be analyzed by the beam propagation factor M2 as same as that of monochromatic beams. A simple method to measure the chromatic beam factor M2 is demonstrated. The chromatic factor M2 is found invariable while the laser beam propagates through the dispersion-free ABCD system.
彩色激光光束 M2因子 ABCD系统 260.2030 Dispersion 140.3460 Lasers 350.5500 Propagation 
Chinese Optics Letters
2006, 4(10): 586

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