Laser & Optoelectronics Progress, Volume. 57, Issue 4, 041019(2020)
Computational Ghost Imaging Based on Orthogonal Sinusoidal Speckle
[1] Shapiro J H. Computational ghost imaging[J]. Physical Review A, 78, 061802(2008).
[2] Zhang X, Meng X F, Yang X L et al. Singular value decomposition ghost imaging[J]. Optics Express, 26, 12948-12958(2018).
[4] Strekalov D V, Sergienko A V, Klyshko D N et al. Observation of two-photon “ghost” interference and diffraction[J]. Physical Review Letters, 74, 3600-3603(1995).
[5] Bennink R S, Bentley S J, Boyd R W. “Two-photon” coincidence imaging with a classical source[J]. Physical Review Letters, 89, 113601(2002).
[7] Zhao C Q, Gong W L, Chen M L et al. Ghost imaging lidar via sparsity constraints[J]. Applied Physics Letters, 101, 141123(2012).
[8] Liang Z Y, Fan X, Cheng Z D et al. High-order thermo-optic ghost imaging for a tangential moving target[J]. Laser & Optoelectronics Progress, 53, 081102(2016).
[10] Erkmen B I, Shapiro J H. Signal-to-noise ratio of Gaussian-state ghost imaging[J]. Physical Review A, 79, 023833(2009).
[11] Ferri F, Magatti D, Lugiato L A et al. Differential ghost imaging[J]. Physical Review Letters, 104, 253603(2010).
[13] Bai X, Li Y Q, Zhao S M. Differential compressive correlated imaging[J]. Acta Physica Sinica, 62, 044209(2013).
[18] Mahdi Khamoushi S M, Nosrati Y, Tavassoli S H. Sinusoidal ghost imaging[J]. Optics Letters, 40, 3452-3455(2015).
[19] Wang X X, Tao Y, Yang F B et al. An effective compressive computational ghost imaging with hybrid speckle pattern[J]. Optics Communications, 454, 124470(2020).
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Guoqing Yan, Fengbao Yang, Xiaoxia Wang, Yong Tao. Computational Ghost Imaging Based on Orthogonal Sinusoidal Speckle[J]. Laser & Optoelectronics Progress, 2020, 57(4): 041019
Category: Image Processing
Received: Sep. 18, 2019
Accepted: Sep. 27, 2019
Published Online: Feb. 20, 2020
The Author Email: Fengbao Yang (yfengb@163.com)