• Chinese Journal of Quantum Electronics
  • Vol. 36, Issue 4, 385 (2019)
Hui GUO1、2, Zhaopeng WEI1, Ruyong HE1, LINZequn 1, Le WANG1, and Shengmei ZHAO1
Author Affiliations
  • 1[in Chinese]
  • 2[in Chinese]
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    DOI: 10.3969/j.issn.1007-5461. 2019.04.001 Cite this Article
    GUO Hui, WEI Zhaopeng, HE Ruyong, LINZequn, WANG Le, ZHAO Shengmei. Imaging scheme of moving object based on temporal and spatial correlation[J]. Chinese Journal of Quantum Electronics, 2019, 36(4): 385 Copy Citation Text show less
    References

    [2] Chan K W C, O’Sullivan M N, Boyd R W. High-order thermal ghost imaging [J]. Optics Letters , 2009, 34(21): 3343-3345.

    [4] Wang L, Zou L, Zhao S. Edge detection based on subpixel-speckle-shifting ghost imaging [J]. Optics Communications , 2018, 407: 181-185.

    [5] Cheng J. Ghost imaging through turbulent atmosphere [J]. Optics Express , 2009, 17(10): 7916-7921.

    [6] Lyu M, Wang W, Wang H, et al . Deep-learning-based ghost imaging [J]. Scientific Reports , 2017, 7: 17865.

    [8] Klyshko D N. Two-photon light: Influence of filtration and a new possible EPR experiment [J]. Physics Letters A , 1988, 128(3-4): 133-137.

    [9] 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.

    [10] Gatti A, Bache M, Magatti D, et al . Coherent imaging with pseudo-thermal incoherent light [J]. Journal of Modern Optics , 2006, 53(5-6): 739-760.

    [11] Bromberg Y, Katz O, Silberberg Y. Ghost imaging with a single detector [J]. Physical Review A , 2009, 79(5): 053840.

    [12] Shirai T, Setl T, Friberg A T. Temporal ghost imaging with classical non-stationary pulsed light [J]. Journal of the Optical Society of America B , 2010, 27(12): 2549-2555.

    [13] Ryczkowski P, Barbier M, Friberg A T, et al . Ghost imaging in the time domain [J]. Nature Photonics , 2016, 10: 167-170.

    [14] Devaux F, Moreau P A, Denis S, et al . Computational temporal ghost imaging [J]. Optica , 2016, 3(7): 698-701.

    [15] Ryczkowski P, Barbier M, Friberg A T, et al . Magnified time-domain ghost imaging [J]. APL Photonics , 2017, 2(4): 046102.

    [16] Kuusela T A. Temporal ghost imaging [J]. European Journal of Physics , 2017, 38: 035301.

    [17] Liu J, Wang J, Chen H, et al . High visibility temporal ghost imaging with classical light [J]. Optics Communications , 2018, 410: 824-829.

    [18] Li H, Xiong J, Zeng G. Lensless ghost imaging for moving objects [J]. Optical Engineering , 2011, 50(12): 127005.

    [20] Li E, Bo Z, Chen M, et al . Ghost imaging of a moving target with an unknown constant speed [J]. Applied Physics Letters , 2014, 104(25): 251120.

    [21] Magaa-Loaiza O S, Howland G A, Malik M, et al . Compressive object tracking using entangled photons [J]. Applied Physics Letters , 2013, 102(23): 231104.

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    GUO Hui, WEI Zhaopeng, HE Ruyong, LINZequn, WANG Le, ZHAO Shengmei. Imaging scheme of moving object based on temporal and spatial correlation[J]. Chinese Journal of Quantum Electronics, 2019, 36(4): 385
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