Infrared and Laser Engineering, Volume. 50, Issue 12, 20211059(2021)
Some research progress on the theoretical study of ghost imaging in Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences (Invited)
Fig. 3. Diagram of ghost imaging based on time-domain ensemble statistics
Fig. 6. Comparison of variance distribution of simulated results in real-space ghost imaging with theoretical results at different SNRs in object light path. (a) ; (b) 不同物光路探测信噪比下,实空间鬼成像关联结果的仿真方差分布与理论比较。(a)信噪比 ;(b)信噪比
Fig. 7. Simulated target in Fourier diffraction ghost imaging (a) and its Fourier spectrum (b)
Fig. 8. Comparison of variance distribution of simulated results in Fourier diffraction ghost imaging with theoretical results at different SNRs. (a) ;(b) 不同物光路探测信噪比下,傅里叶衍射鬼成像关联结果的仿真方差分布与理论比较。 (a)信噪比 ;(b)信噪比
Fig. 10. Diffraction spectrum images obtained via conditional averaging on two equally-divided parts. (a) Positive image; (b) Negative image; (c) Subtraction image of positive images and negative images; (d) Diffraction spectrum image of reference object[77]
Fig. 11. Simulation results. (a) Retrieved image via conditional average; (b) Retrieved image via original fluctuation relation[77]
Fig. 12. Experiment results. (a) Retrieved image via conditional average; (b) Retrieved image via original fluctuation correlation[77]
Fig. 13. Statistical resolution limit of ghost imaging camera in (
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Zhentao Liu, Chenyu Hu, Zhishen Tong, Chunyan Chu, Shensheng Han. Some research progress on the theoretical study of ghost imaging in Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences (Invited)[J]. Infrared and Laser Engineering, 2021, 50(12): 20211059
Category: Special issue—Single-pixel imaging
Received: Sep. 20, 2021
Accepted: Nov. 24, 2021
Published Online: Feb. 9, 2022
The Author Email: Han Shensheng (sshan@mail.shcnc.ac.cn)