Chinese Optics Letters, Volume. 20, Issue 9, 091102(2022)

Dispersion control of broadband super-Rayleigh speckles for snapshot spectral ghost imaging

Pengwei Wang1,2, Zhentao Liu1,2、*, Jianrong Wu1, Xia Shen1, and Shensheng Han1,2,3
Author Affiliations
  • 1Key Laboratory of Quantum Optics, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing 100049, China
  • 3Hangzhou Institute for Advanced Study, University of Chinese Academy of Sciences, Hangzhou 310024, China
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    References(28)

    [1] A. F. H. Goetz, G. Vane, J. E. Solomon, B. N. Rock. Imaging spectrometry for earth remote sensing. Science, 228, 1147(1985).

    [2] T. Vo-Dinh, B. Cullum, P. Kasili. Development of a multi-spectral imaging system for medical applications. J. Phys. D, 36, 1663(2003).

    [3] N. Hagen, M. W. Kudenov. Review of snapshot spectral imaging technologies. Opt. Eng., 52, 090901(2013).

    [4] L. Gao, L. V. Wang. A review of snapshot multidimensional optical imaging: measuring photon tags in parallel. Phys. Rep., 616, 1(2016).

    [5] I. S. Bowen. The image-slicer a device for reducing loss of light at slit of stellar spectrograph. Astrophys. J., 88, 113(1938).

    [6] A. Hirai, T. Inoue, K. Itoh, Y. Ichioka. Application of multiple-image Fourier transform spectral imaging to measurement of fast phenomena. Opt. Rev., 1, 205(1994).

    [7] A. R. Harvey, D. W. Fletcher-Holmes. High-throughput snapshot spectral imaging in two dimensions. Proc. SPIE, 4959, 46(2003).

    [8] G. R. Arce, D. J. Brady, L. Carin, H. Arguello, D. S. Kittle. Compressive coded aperture spectral imaging: an introduction. IEEE Signal Process. Mag., 31, 105(2014).

    [9] S. K. Sahoo, D. Tang, C. Dang. Single-shot multispectral imaging with a monochromatic camera. Optica, 4, 1209(2017).

    [10] X. Li, J. A. Greenberg, M. E. Gehm. Single-shot multispectral imaging through a thin scatterer. Optica, 6, 864(2019).

    [11] Z. Liu, S. Tan, J. Wu, E. Li, X. Shen, S. Han. Spectral camera based on ghost imaging via sparsity constraints. Sci. Rep., 6, 25718(2016).

    [12] K. Monakhova, K. Yanny, N. Aggarwal, L. Waller. Spectral DiffuserCam: lensless snapshot hyperspectral imaging with a spectral filter array. Optica, 7, 1298(2020).

    [13] Z. Li, J. Suo, X. Hu, C. Deng, J. Fan, Q. Dai. Efficient single-pixel multispectral imaging via non-mechanical spatio-spectral modulation. Sci. Rep., 7, 41435(2017).

    [14] C. Wang, W. Gong, X. Shao, S. Han. The influence of the property of random coded patterns on fluctuation-correlation ghost imaging. J. Opt., 18, 065703(2016).

    [15] L. Zhang, Y. Lu, D. Zhou, H. Zhang, L. Li, G. Zhang. Superbunching effect of classical light with a digitally designed spatially phase-correlated wavefront. Phys. Rev. A, 99, 063827(2019).

    [16] Y. Wang, F. Wang, R. Liu, P. Zhang, H. Gao, F. Li. Sub-Rayleigh resolution single-pixel imaging using Gaussian- and doughnut-spot illumination. Opt. Express, 27, 5973(2019).

    [17] X. Liu, M. Li, X. Yao, W. Yu, G. Zhai, L. Wu. High-visibility ghost imaging from artificially generated non-Gaussian intensity fluctuations. AIP Adv., 3, 52121(2013).

    [18] Y. Bromberg, H. Cao. Generating non-Rayleigh speckles with tailored intensity statistics. Phys. Rev. Lett., 112, 213904(2014).

    [19] N. Bender, H. Yılmaz, Y. Bromberg, H. Cao. Customizing speckle intensity statistics. Optica, 5, 595(2018).

    [20] S. Liu, Z. Liu, C. Hu, E. Li, X. Shen, S. Han. Spectral ghost imaging camera with super-Rayleigh modulator. Opt. Commun., 472, 126017(2020).

    [21] D. C. O’Shea, T. J. Suleski, A. D. Kathman, D. W. Prather. Diffractive Optics: Design, Fabrication, and Test(2004).

    [22] F. L. Pedrotti, L. M. Pedrotti, L. S. Pedrotti. Introduction to Optics, 91(1954).

    [23] T. Stone, N. George. Hybrid diffractive-refractive lens and achromats. Appl. Opt., 27, 2960(1988).

    [24] G. Blough, G. M. Morris. Hybrid lens offer high performance at low cost. Laser Focus World, 31, 67(1995).

    [25] S. Tan, Z. Liu, E. Li, S. Han. Hyperspectral compressed sensing based on prior images constrained. Acta Opt. Sin., 35, 0811003(2015).

    [26] Z. Wang, A. C. Bovik, H. R. Sheikh, E. P. Simoncelli. Image quality assessment: from error visibility to structural similarity. IEEE Trans. Image Process., 13, 600(2004).

    [27] W. Li, Z. Tong, K. Xiao, Z. Liu, Z. Wang. Single frame wide-field nanoscopy based on ghost imaging via sparsity constraints (GISC nanoscopy). Optica, 6, 1515(2019).

    [28] P. C. Agrawal. A broad spectral band Indian Astronomy satellite ‘Astrosat’. Adv. Space Res., 38, 2989(2006).

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    Pengwei Wang, Zhentao Liu, Jianrong Wu, Xia Shen, Shensheng Han. Dispersion control of broadband super-Rayleigh speckles for snapshot spectral ghost imaging[J]. Chinese Optics Letters, 2022, 20(9): 091102

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    Paper Information

    Category: Imaging Systems and Image Processing

    Received: Sep. 16, 2021

    Accepted: May. 20, 2022

    Posted: May. 23, 2022

    Published Online: Jun. 16, 2022

    The Author Email: Zhentao Liu (ztliu@siom.ac.cn)

    DOI:10.3788/COL202220.091102

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