[1] Pittman T B, Shih Y H, Strekalov D V, et al. Optical imaging by means of two-photon quantum entanglement[J]. Physical Review A, 1995, 52(5): R3429-R3432. [2] Bennink R S, Bentley S J, Boyd R W. “Two-photon” coincidence imaging with a classical source[J]. Physical Review Letters, 2002, 89(11): 113601. [3] Ferri F, Magatti D, Gatti A, et al. High-resolution ghost image and ghost diffraction experiments with thermal light[J]. Physical review letters, 2005, 94(18): 183602. [4] Valencia A, Scarcelli G, D’Angelo M, et al. Two-photon imaging with thermal light[J]. Physical review letters, 2005, 94(6): 063601. [5] Bromberg Y, Katz O, Silberberg Y. Ghost imaging with a single detector[J]. Physical Review A, 2009, 79(5): 053840. [6] Welsh S S, Edgar M P, Bowman R, et al. Fast full-color computational imaging with single-pixel detectors[J]. Optics Express, 2013, 21(20): 23068-23074. [7] Huang J, Shi D F. Multispectral computational ghost imaging with multiplexed illumination[J]. Journal of Optics, 2017, 19(7): 075701. [8] Huang J, Shi D F, Meng W W, et al. Spectral encoded computational ghost imaging[J]. Optics Communications, 2020, 474: 126105. [9] Edgar M, Gibson G M, Bowman R W, et al. Simultaneous real-time visible and infrared video with single-pixel detectors[J]. Scientific reports, 2015, 5(1): 1-8.[10] Chan W L, Charan K, Takhar D, et al. A single-pixel terahertz imaging system based on compressed sensing[J]. Applied Physics Letters, 2008, 93(12): 121105. [11] Watts C M, Shrekenhamer D, Montoya J, et al. Terahertz compressive imaging with metamaterial spatial light modulators[J]. Nature Photonics, 2014, 8(8): 605-609. [12] Gibson G M, Sun B Q, Edgar M P, et al. Real-time imaging of methane gas leaks using a single-pixel camera[J]. Optics Express, 2017, 25(4): 2998-3005. [13] ZHANG Na. Polarization ghost imaging system based on compressed sensing[J]. Chinese Journal of Quantum Electronics, 2014, 31 (06): 656-662.张娜. 基于压缩感知的偏振鬼成像系统[J]. 量子电子学报, 2014, 31(06): 656-662. [14] Sun M J, Edgar M P, Gibson G M, et al. Single-pixel three-dimensional imaging with time-based depth resolution[J]. Nature Communications, 2016, 7: 12010. [15] Zhang Z B, Liu S J, Peng J Z, et al. Simultaneous spatial, spectral, and 3D compressive imaging via efficient Fourier single-pixel measurements[J]. Optica, 2018, 5(3): 315-319. [16] Huang J, Shi D F, Yuan K E, et al. Three-dimensional Fourier ghost imaging[J]. Optik, 2020, 219: 165149. [17] Zha L B, Shi D F, Huang J, et al. Single-pixel tracking of fast-moving object using geometric moment detection[J]. Optics Express, 2021, 29(19): 30327-30336. [18] Sun S, Lin H Z, Xu Y K, et al. Tracking and imaging of moving objects with temporal intensity difference correlation[J]. Optics Express, 2019, 27(20): 27851-27861. [19] Shi D F, Yin K X, Huang J, et al. Fast tracking of moving objects using single-pixel imaging[J]. Optics Communications, 2019, 440: 155-162. [20] Shi D F, Huang J, Wang Y J, et al. Simultaneous fusion, imaging and encryption of multiple objects using a single-pixel detector[J]. Scientific Reports, 2017, 7: 13172. [21] Wang Z, Bovik A C, Sheikh H R, et al. Image quality assessment: from error visibility to structural similarity[J]. IEEE transactions on image processing, 2004, 13(4): 600-612. |