• Chinese Optics Letters
  • Vol. 20, Issue 2, 021101 (2022)
Yaping Zhang1、*, Houxin Fan1, and Ting-Chung Poon2
Author Affiliations
  • 1Yunnan Provincial Key Laboratory of Modern Information Optics, Kunming University of Science and Technology, Kunming 650500, China
  • 2The Bradley Department of Electrical and Computer Engineering, Virginia Tech, Blacksburg, Virginia 24061, USA
  • show less
    DOI: 10.3788/COL202220.021101 Cite this Article Set citation alerts
    Yaping Zhang, Houxin Fan, Ting-Chung Poon. Optical image processing using acousto-optic modulators as programmable volume holograms: a review [Invited][J]. Chinese Optics Letters, 2022, 20(2): 021101 Copy Citation Text show less
    References

    [1] T.-C. Poon, J.-P. Liu. Introduction to Modern Digital Holography with MATLAB(2014).

    [2] D. Peri, A. A. Friesem. Image restoration using volume diffraction gratings. Opt. Lett., 3, 124(1978).

    [3] S. Case. Fourier processing in the object plane. Opt. Lett., 4, 286(1979).

    [4] Y. Yang, X. Liu, Y. Wu, T. Li, F. Fan, H. Huang, S. Wen. Optical edge detection with adjustable resolution based on liquid crystal polarization gratings. Chin. Opt. Lett., 18, 093501(2020).

    [5] L. Zhou, X. Huang, Q. Fu, X. Zou, Y. Bai, X. Fu. Fine edge detection in single-pixel imaging. Chin. Opt. Lett., 19, 121101(2021).

    [6] V. I. Balakshy. Acousto-optic cell as a filter of spatial frequencies. Radiotekh. Elektron., 29, 1610(1984).

    [7] V. I. Balakshy. Acousto-optic visualization of optical wavefronts [Invited]. Appl. Opt., 57, C56(2018).

    [8] J. Xia, D. Dunn, T.-C. Poon, P. P. Banerjee. Image edge enhancement by Bragg diffraction. Opt. Commun., 128, 1(1996).

    [9] P. P. Banerjee, D. Cao, T.-C. Poon. Basic image-processing operations by use of acousto-optics. Appl. Opt., 36, 3086(1997).

    [10] D. Cao, P. P. Banerjee, T.-C. Poon. Image edge enhancement with two cascaded acousto-optic cells with contrapropagating sound. Appl. Opt., 37, 3007(1998).

    [11] V. M. Kotov, S. V. Averin, E. V. Kotov. High-frequency acousto-optic light modulation by double propagation of the beam through two Bragg cells. J. Opt. Technol., 86, 129(2019).

    [12] V. M. Kotov. Broadband acousto-optic modulation of optical radiation. Acoust. Phys., 65, 369(2019).

    [13] P. P. Banerjee, D. Cao, T.-C. Poon. Notch spatial filtering with an acousto-optic modulator. Appl. Opt., 37, 7532(1998).

    [14] J. A. Davis, M. D. Norwak. Selective edge enhancement of images with an acousto-optic light modulator. Appl. Opt., 41, 4835(2002).

    [15] M. R. Chatterjee, T.-C. Poon, D. N. Sitter. Transfer function formalism for strong acousto-optic Bragg diffraction of light beams with arbitrary profiles. Acustica, 71, 81(1990).

    [16] M. McNeill, T.-C. Poon. Gaussian-beam profile shaping by acousto-optic Bragg diffraction. Appl. Opt., 33, 4508(1994).

    [17] Y. A. Abdelaziez, P. P. Banerjee, D. R. Evans. Beam shaping by use of hybrid acousto-optics with feedback. Appl. Opt., 44, 3473(2005).

    [18] T. Wang, C. Zhang, A. Aleksov, I. Salama, A. Kar. Gaussian beam diffraction by two-dimensional refractive index modulation for high diffraction efficiency and large deflection angle. Opt. Express, 25, 16002(2017).

    [19] K. Yushkov, V. A. Molchanov, Y. I. Balakshy, S. N. Mantsevich. Acousto-optic transfer functions as applied to S laser beam shaping. Proc. SPIE, 10744, 107440Q(2018).

    [20] V. B. Voloshinov, T. M. Babkina, V. Y. Molchanov. Two-dimensional selection of optical spatial frequencies by acousto-optic methods. Opt. Eng., 41, 1273(2002).

    [21] V. I. Balakshy, D. E. Kostyuk. Acousto-optic image processing. Appl. Opt., 48, C24(2009).

    [22] K. B. Yushkov, V. Y. Molchanov, P. V. Belousov, A. Y. Abrosimov. Contrast enhancement in microscopy of human thyroid tumors by means of acousto-optic adaptive spatial filtering. J. Biomed. Opt., 21, 016003(2016).

    [23] K. B. Yushkov, V. Y. Molchanov. Hyperspectral imaging acousto-optic system with spatial filtering for optical phase visualization. J. Biomed. Opt., 22, 066017(2017).

    [24] V. M. Kotov, S. V. Averin, E. K. Kotov, G. N. Shkerdin. Acousto-optic filters based on the superposition of diffraction fields [Invited]. Appl. Opt., 57, C83(2018).

    [25] V. M. Kotov, S. V. Averin. Two-dimensional image edge enhancement using two order of Bragg diffraction. Quantum Electron., 50, 305(2020).

    [26] V. M. Kotov. Processing 2D images using the Bragg diffraction. J. Commun. Technol. Electron., 65, 1331(2020).

    [27] V. M. Kotov. Two-dimensional image edge enhancement using a spatial frequency filter of two-color radiation. Quantum Electron., 51, 348(2021).

    [28] T.-C. Poon, T. Kim. Engineering Optics with MATLAB(2018).

    [29] W. R. Klein, B. D. Cook. A unified approach to ultrasonic light diffraction. IEEE Trans. Sonics Ultrason., 14, 123(1967).

    [30] R. Appel, M. G. Somekh. Series solution for two-frequency Bragg interaction using the Korpel–Poon multiple-scattering model. J. Opt. Soc. Am. A, 10, 466(1993).

    [31] T.-C. Poon, M. R. Chatterjee. Transfer function approach to acousto-optic Bragg diffraction of finite optical beams using Fourier integral. International IEEE/Antennas and Propagation Society Symposium and URSI Radio Science Meeting, 1(1988).

    [32] A. V. Gorevoy, A. S. Machikhin, G. N. Martynov, V. E. Pozhar. Spatiospectral transformation of noncollimated light beams diffracted by ultrasound in birefringent crystals. Photonics Res., 9, 687(2020).

    [33] P. Phariseau. On the diffraction of light by progressive supersonic waves. Proc. Indian Acad. Sci., 44, 165(1956).

    [34] H. Kogelnik. Coupled wave theory for thick hologram gratings. Bell Sys. Tech. J., 48, 2909(1969).

    [35] S. Lowenthal, Y. Belvaux. Observation of phase objects by optically processed Hilbert transforms. Appl. Phys. Lett., 11, 49(1967).

    [36] X. Yang, W. Jia, D. Wu, T.-C. Poon. On the difference between single-and double-sided bandpass filtering of spatial frequencies. Opt. Commun., 384, 71(2017).

    [37] Y. Zhang, T.-C. Poon, P. W. M. Tsang, R. Wang, L. Wang. Review on feature extraction for 3-D incoherent image processing using optical scanning holography. IEEE Trans. Industr. Inform., 15, 6146(2019).

    [38] T.-C. Poon, A. Korpel. High efficiency acousto-optic diffraction into the second Bragg order. IEEE Ultrasonics Symposium, 751(1983).

    Data from CrossRef

    [1] Maxim I. Kupreychik, Konstantin B. Yushkov. Topological evolution of acousto-optic transfer functions in biaxial crystals. Journal of the Optical Society of America B, 39, 3169(2022).

    Yaping Zhang, Houxin Fan, Ting-Chung Poon. Optical image processing using acousto-optic modulators as programmable volume holograms: a review [Invited][J]. Chinese Optics Letters, 2022, 20(2): 021101
    Download Citation