Acta Optica Sinica, Volume. 43, Issue 9, 0911001(2023)

Three-Dimensional Characteristics of Speckle Field of Reflective Pseudothermal Light Sources

Libin Lu1,3, Zhijie Tan1、*, Hong Yu1,2, and Shensheng Han1,2
Author Affiliations
  • 1Key Laboratory of Quantum Optics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, Zhejiang, China
  • 3University of Chinese Academy of Sciences, Beijing 100049, China
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    References(37)

    [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, 52, R3429-R3432(1995).

    [2] Bennink R S, Bentley S J, Boyd R W. Two-Photon coincidence imaging with a classical source[J]. Physical Review Letters, 89, 113601(2002).

    [3] Cai Y J, Zhu S Y. Ghost interference with partially coherent radiation[J]. Optics Letters, 29, 2716-2718(2004).

    [4] Gatti A, Brambilla E, Bache M et al. Ghost imaging with thermal light: comparing entanglement and classical correlation[J]. Physical Review Letters, 93, 093602(2004).

    [5] Cheng J, Han S S. Incoherent coincidence imaging and its applicability in X-ray diffraction[J]. Physical Review Letters, 92, 093903(2004).

    [6] Zhang M H, Wei Q, Shen X et al. Sub-wavelength Fourier-transform imaging of a pure-phase object with thermal light[J]. Physics Letters A, 366, 569-574(2007).

    [7] Cheng J, Lin J. Unified theory of thermal ghost imaging and ghost diffraction through turbulent atmosphere[J]. Physical Review A, 87, 043810(2013).

    [8] Xu Y K, Liu W T, Zhang E F et al. Is ghost imaging intrinsically more powerful against scattering?[J]. Optics Express, 23, 32993-33000(2015).

    [9] Tan Z J, Yin S Q, Yu H et al. Intensity correlation interferometry for astral observation angle based on spatial modulation[J]. Acta Optica Sinica, 42, 0712005(2022).

    [10] Zhang M H, Wei Q, Shen X et al. Lensless Fourier-transform ghost imaging with classical incoherent light[J]. Physical Review A, 75, 021803(2007).

    [11] Davis T J, Gao D, Gureyev T E et al. Phase-contrast imaging of weakly absorbing materials using hard X-rays[J]. Nature, 373, 595-598(1995).

    [12] Fan J D, Sun Z B, Zhang J et al. Quantitative imaging of single unstained magnetotactic bacteria by coherent X-ray diffraction microscopy[J]. Analytical Chemistry, 87, 5849-5853(2015).

    [13] Lane T J, Ratner D. What are the advantages of ghost imaging? Multiplexing for X-ray and electron imaging[J]. Optics Express, 28, 5898-5918(2020).

    [14] Xiong J, Cao D Z, Huang F et al. Experimental observation of classical subwavelength interference with a pseudothermal light source[J]. Physical Review Letters, 94, 173601(2005).

    [15] Pelliccia D, Rack A, Scheel M et al. Experimental X-ray ghost imaging[J]. Physical Review Letters, 117, 113902(2016).

    [16] Zhang A X, He Y H, Wu L A et al. Tabletop X-ray ghost imaging with ultra-low radiation[J]. Optica, 5, 374-377(2018).

    [17] Kingston A M, Myers G R, Pelliccia D et al. X-ray ghost-tomography: artefacts, dose distribution, and mask considerations[J]. IEEE Transactions on Computational Imaging, 5, 136-149(2019).

    [18] Tan Z J, Li Q Y, Yu H et al. Progress on ghost imaging with X-ray and particles[J]. Laser & Optoelectronics Progress, 58, 1011008(2021).

    [19] Yu H, Lu R H, Han S S et al. Fourier-transform ghost imaging with hard X rays[J]. Physical Review Letters, 117, 113901(2016).

    [20] Kingston A M, Pelliccia D, Rack A et al. Ghost tomography[J]. Optica, 5, 1516-1520(2018).

    [21] Cheng J. Weak ghost scattering with stochastic electromagnetic beams[J]. OSA Continuum, 2, 268-278(2019).

    [22] Chen Q, Yu H, Tan Z J et al. Simulation research on X-ray Fourier-transform ghost imaging using super-Rayleigh speckle field[J]. Acta Optica Sinica, 41, 1934001(2021).

    [23] Liu H L, Han S S. Spatial longitudinal coherence length of a thermal source and its influence on lensless ghost imaging[J]. Optics Letters, 33, 824-826(2008).

    [24] Zhang G, Wu Z S. Bi-frequency correlation properties of the scattered intensity from dielectric rough surfaces[J]. Optics Express, 20, 14833-14847(2012).

    [25] Wang Z, Sanders S T. Toward single-ended absorption spectroscopy probes based on backscattering from rough surfaces: H2O vapor measurements near 1350 nm[J]. Applied Physics B, 121, 187-192(2015).

    [26] Divitt S, Watnik A T. Spatial-spectral correlations of broadband speckle in around-the-corner imaging conditions[J]. Optics Express, 30, 7169-7186(2022).

    [27] Wang C F, Zhang D W, Bai Y F et al. Ghost imaging for a reflected object with a rough surface[J]. Physical Review A, 82, 063814(2010).

    [28] Nan S Q, Bai Y F, Shi X H et al. Experimental investigation of ghost imaging of reflective objects with different surface roughness[J]. Photonics Research, 5, 372-376(2017).

    [29] Goodman J W[M]. Speckle phenomena in optics: theory and applications(2007).

    [30] Zhang G, Wu Z S, Li Y H. Speckle size of light scattered from 3D rough objects[J]. Optics Express, 20, 4726-4737(2012).

    [31] Li Q B, Chiang F P. Three-dimensional dimension of laser speckle[J]. Applied Optics, 31, 6287-6291(1992).

    [32] Gao W K, Du X P, Wang Y et al. Analysis of influences of micro-rough surface parameters on laser speckle field[J]. Acta Optica Sinica, 41, 1103001(2021).

    [33] Leushacke L, Kirchner M. Three-dimensional correlation coefficient of speckle intensity for rectangular and circular apertures[J]. Journal of the Optical Society of America A, 7, 827-832(1990).

    [34] Yu H, Lu R, Tan Z et al. Recent progress in X-ray Fourier-transform ghost imaging[J]. Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment, 928, 33-36(2019).

    [35] Barton G. The quantum theory of light[J]. Physics Bulletin, 25, 103-104(1974).

    [36] McMorrow D, Als-Nielsen J[M]. Elements of modern X-ray physics(2011).

    [37] Hayashi K. Review of the applications of X-ray refraction and the X-ray waveguide phenomenon to estimation of film structures[J]. Journal of Physics: Condensed Matter, 22, 474006(2010).

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    Libin Lu, Zhijie Tan, Hong Yu, Shensheng Han. Three-Dimensional Characteristics of Speckle Field of Reflective Pseudothermal Light Sources[J]. Acta Optica Sinica, 2023, 43(9): 0911001

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    Paper Information

    Category: Imaging Systems

    Received: Sep. 30, 2022

    Accepted: Nov. 25, 2022

    Published Online: Apr. 25, 2023

    The Author Email: Tan Zhijie (tanzj@siom.ac.cn)

    DOI:10.3788/AOS221780

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