• Infrared and Laser Engineering
  • Vol. 49, Issue 9, 20201040 (2020)
Weiwei Fu and Kun Huang*
Author Affiliations
  • Department of Optics and Optical Engineering, School of Physical Sciences, University of Science and Technology of China, Hefei 230026, China
  • show less
    DOI: 10.3788/IRLA20201040 Cite this Article
    Weiwei Fu, Kun Huang. All-optical image processing technology and applications based on micro-/nano-devices[J]. Infrared and Laser Engineering, 2020, 49(9): 20201040 Copy Citation Text show less
    References

    [1] R J Holyer, S H Peckinpaugh. Edge detection applied to satellite imagery of the oceans. IEEE Transactions on Geoscience and Remote Sensing, 27, 46-56(1989).

    [2] D L Pham, C Xu, J L Prince. Current methods in medical image segmentation. Annual Review of Biomedical Engineering, 2, 315-337(2000).

    [3] R Athale, D Psaltis. Optical computing: past and future. Optics and Photonics News, 27, 32-39(2016).

    [4] L Cutrona, E N Leith, L Porcello. On the application of coherent optical processing techniques to synthetic-aperture radar. Proceedings of the IEEE, 54, 1026-1032(1966).

    [5] Y S Abu-mostafa, D Psaltis. Optical neural computers. Scientific American, 256, 88-95(1987).

    [6] Goodman J W. Introduction to Fourier Optics[M]. Colado: Roberts Company Publishers, 2005.

    [7] N Yu, F Capasso. Flat optics with designer metasurfaces. Nature Materials, 13, 139-150(2014).

    [8] N Yu, P Genevet, M A Kats. Light propagation with phase discontinuities: generalized laws of reflection and refraction. Science, 334, 333-337(2011).

    [9] A V Kildishev, A Boltasseva, V M Shalaev. Planar photonics with metasurfaces. Science, 339, 1232009(2013).

    [10] S Sun, K-Y Yang, C-M Wang. High-efficiency broadband anomalous reflection by gradient meta-surfaces. Nano Letters, 12, 6223-6229(2012).

    [11] F Monticone, N M Estakhri, A Alu. Full control of nanoscale optical transmission with a composite metascreen. Physical Review Letters, 110, 203903(2013).

    [12] M Esfandyarpour, E C Garnett, Y Cui. Metamaterial mirrors in optoelectronic devices. Nature Nanotechnology, 9, 542(2014).

    [13] M Kim, A M H Wong, G V Eleftheriades. Optical Huygens' metasurfaces with independent control of the magnitude and phase of the local reflection coefficients. Physical Review X, 4, 041042(2014).

    [14] V Asadchy, A Daz-rubio, S Tcvetkova. Flat engineered multichannel reflectors. Physical Review X, 7, 031046(2017).

    [15] Y Ra’di, D L Sounas, A Alu. Metagratings: beyond the limits of graded metasurfaces for wave front control. Physical Review Letters, 119, 067404(2017).

    [16] A Silva, F Monticone, G CastaldI. Performing mathematical operations with metamaterials. Science, 343, 160-163(2014).

    [17] H Kwon, D Sounas, A Cordaro. Nonlocal metasurfaces for optical signal processing. Phys Rev Lett, 121, 173004(2018).

    [18] C Guo, M Xiao, M Minkov. Photonic crystal slab Laplace operator for image differentiation. Optica, 5, 251-256(2018).

    [19] T Zhu, Y Zhou, Y Lou. Plasmonic computing of spatial differentiation. Nat Commun, 8, 15391(2017).

    [20] J Canny. A computational approach to edge detection. IEEE Transactions on Pattern Analysis and Machine Intelligence, PAMI-8, 679-698(1986).

    [21] D Marr, E Hildreth. Theory of edge detection. Proceedings of the Royal Society of London. Series B. Biological Sciences, 207, 187-217(1980).

    [22] H-S Hsu, W-H Tsai. Moment-preserving edge detection and its application to image data compression. Optical Engineering, 32, 1596-1609(1993).

    [23] T Brosnan, D-W Sun. Improving quality inspection of food products by computer vision—a review. Journal of Food Engineering, 61, 3-16(2004).

    [24] Liu Y, Cheng MM, Hu X, et al. Richer convolutional features f edge detection.[C]Proceedings of the IEEE Conference on Computer Vision Pattern Recognition, 2017:30003009.

    [25] D R Martin, C C Fowlkes, J Malik. Learning to detect natural image boundaries using local brightness, color, and texture cues. IEEE Transactions on Pattern Analysis & Machine Intelligence, 5, 530-549(2004).

    [26] G Shrivakshan, C Chandrasekar. A comparison of various edge detection techniques used in image processing. International Journal of Computer Science Issues (IJCSI), 9, 269(2012).

    [27] F Roddier. Curvature sensing and compensation: a new concept in adaptive optics. Applied Optics, 27, 1223-1225(1988).

    [28] D Marmanis, K Schindler, J D Wegner. Classification with an edge: Improving semantic image segmentation with boundary detection. ISPRS Journal of Photogrammetry and Remote Sensing, 135, 158-172(2018).

    [29] Chen LC, Barron J T, Papreou G, et al. Semantic image segmentation with taskspecific edge detection using cnns a discriminatively trained domain transfm.[C]Proceedings of the IEEE Conference on Computer Vision Pattern Recognition, 2016: 45454554.

    [30] P Choudhry. High-throughput method for automated colony and cell counting by digital image analysis based on edge detection. PloS one, 11, 0148469(2016).

    [31] Xie S, Tu Z. Holisticallynested edge detection[C] Proceedings of the IEEE International Conference on Computer Vision, 2015: 13951403.

    [32] C K T Geb, P Koumoutsakos. Edge detection in microscopy images using curvelets. BMC Bioinformatics, 10, 75(2009).

    [33] Haralick R M, Shapiro L G. Computer Robot Vision[M]. Massachusetts: Addisonwesley Reading, 1992.

    [34] H Wang, C Guo, Z Zhao. Compact incoherent image differentiation with nanophotonic structures. ACS Photonics, 7, 338-343(2020).

    [35] A Pors, M G Nielsen, S I Bozhevolnyi. Analog computing using reflective plasmonic metasurfaces. Nano Lett, 15, 791-797(2015).

    [36] A Cordaro, H Kwon, D Sounas. High-index dielectric metasurfaces performing mathematical operations. Nano Letters, 19, 8418-8423(2019).

    [37] Y Zhou, H Zheng, I I Kravchenko. Flat optics for image differentiation. Nature Photonics, 14, 316-323(2020).

    [38] D A Bykov, L L Doskolovich, A A Morozov. First-order optical spatial differentiator based on a guided-mode resonant grating. Optics Express, 26, 10997-11006(2018).

    [39] L L Doskolovich, D A Bykov, E A Bezus. Spatial differentiation of optical beams using phase-shifted Bragg grating. Optics Letters, 39, 1278-1281(2014).

    [40] Y Fang, Z Ruan. Optical spatial differentiator for a synthetic three-dimensional optical field. Optics Letters, 43, 5893-5896(2018).

    [41] Z Ruan. Spatial mode control of surface plasmon polariton excitation with gain medium: from spatial differentiator to integrator. Optics Letters, 40, 601-604(2015).

    [42] P Huo, C Zhang, W Zhu. Photonic spin-multiplexing metasurface for switchable spiral phase contrast imaging. Nano Letters, 20, 2791-2798(2020).

    [43] H Kwon, E Arbabi, S M Kamali. Single-shot quantitative phase gradient microscopy using a system of multifunctional metasurfaces. Nature Photonics, 14, 109-114(2019).

    [44] Zhou J, Qian H, Chen CF, et al. Optical edge detection based on highefficiency dielectric metasurface[J] Proceedings of the National Academy of Sciences, 2019: 201820636.

    [45] S He, J Zhou, S Chen. Spatial differential operation and edge detection based on the geometric spin Hall effect of light. Optics Letters, 45, 877-880(2020).

    [46] T Zhu, Y Lou, Y Zhou. Generalized spatial differentiation from the spin hall effect of light and its application in image processing of edge detection. Physical Review Applied, 11, 034043(2019).

    [47] Y Hadad, D Sounas, A Alu. Space-time gradient metasurfaces. Physical Review B, 92, 100304(2015).

    [48] E F Kou, T Tamir. Excitation of surface plasmons by finite width beams. Applied Optics, 28, 1169-1177(1989).

    [49] Y Lou, H Pan, T Zhu. Spatial coupled-mode theory for surface plasmon polariton excitation at metallic gratings. JOSA B, 33, 819-824(2016).

    [50] Z Ruan, H Wu, M Qiu. Spatial control of surface plasmon polariton excitation at planar metal surface. Optics Letters, 39, 3587-3590(2014).

    [51] S Fan, J D Joannopoulos. Analysis of guided resonances in photonic crystal slabs. Physical Review B, 65, 235112(2002).

    [52] W Zhou, D Zhao, Y-C Shuai. Progress in 2D photonic crystal Fano resonance photonics. Progress in Quantum Electronics, 38, 1-74(2014).

    [53] W Suh, M Yanik, O Solgaard. Displacement-sensitive photonic crystal structures based on guided resonance in photonic crystal slabs. Applied Physics Letters, 82, 1999-2001(2003).

    [54] J N Winn, Y Fink, S Fan. Omnidirectional reflection from a one-dimensional photonic crystal. Optics Letters, 23, 1573-1575(1998).

    [55] J A Davis, D E Mcnamara, D M Cottrell. Image processing with the radial Hilbert transform: theory and experiments. Optics Letters, 25, 99-101(2000).

    [56] K Crabtree, J A Davis, I Moreno. Optical processing with vortex-producing lenses. Applied Optics, 43, 1360-1367(2004).

    [57] S Rhapter, A Jesacher, S Bernet. Spiral phase contrast imaging in microscopy. Optics Express, 13, 689-694(2005).

    [58] A Jesacher, S Rhapter, S Bernet. Shadow effects in spiral phase contrast microscopy. Physical Review Letters, 94, 233902(2005).

    [59] S Bernet, A Jesacher, S Rhapter. Quantitative imaging of complex samples by spiral phase contrast microscopy. Optics Express, 14, 3792-3805(2006).

    [60] C Maurer, A Jesacher, S Bernet. What spatial light modulators can do for optical microscopy. Laser & Photonics Reviews, 5, 81-101(2011).

    [61] M Ritsch-marte. Orbital angular momentum light in microscopy. Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 375, 20150437(2017).

    [62] J Wang, W Zhang, Q Qi. Gradual edge enhancement in spiral phase contrast imaging with fractional vortex filters. Scientific Reports, 5, 15826(2015).

    [63] F Zernike. Diffraction theory of the knife-edge test and its improved form, the phase-contrast method. Monthly Notices of the Royal Astronomical Society, 94, 377-384(1934).

    [64] J G Dodd. Interferometry with Schlieren microscopy. Applied Optics, 16, 470-472(1977).

    [65] A F Jesacher, S Rhapter, S Bernet. Spiral interferogram analysis. JOSA A, 23, 1400-1409(2006).

    [66] A Arbabi, Y Horie, M Bagheri. Dielectric metasurfaces for complete control of phase and polarization with subwavelength spatial resolution and high transmission. Nature Nanotechnology, 10, 937(2015).

    [67] E Maguid, I Yulevich, D Veksler. Photonic spin-controlled multifunctional shared-aperture antenna array. Science, 352, 1202-1206(2016).

    [68] E Arbabi, A Arbabi, S M Kamali. Multiwavelength polarization-insensitive lenses based on dielectric metasurfaces with meta-molecules. Optica, 3, 628-633(2016).

    CLP Journals

    [1] Shaoqi Huang, Zeyuan Song, Mingliang Pan, Yan Long, Bo Dai, Dawei Zhang. Rapid fabrication and characteristics analysis of high-filling-factor microlens array[J]. Infrared and Laser Engineering, 2021, 50(10): 20200476

    Weiwei Fu, Kun Huang. All-optical image processing technology and applications based on micro-/nano-devices[J]. Infrared and Laser Engineering, 2020, 49(9): 20201040
    Download Citation