• Laser & Optoelectronics Progress
  • Vol. 60, Issue 19, 1909001 (2023)
Jingyu Yang1, Yile Shi1, Run Zhou1,2, Zimo Liu1..., Ning Gong1, Rijian Chen1 and Zhijun Ren1,*|Show fewer author(s)
Author Affiliations
  • 1Key Laboratory of Optical Information Detecting and Display Technology, College of Physics and Electronic Information Engineering, Zhejiang Normal University, Jinhua 321004, Zhejiang , China
  • 2Yiwu Industrial and Commercial College, Jinhua 322000, Zhejiang , China
  • show less
    DOI: 10.3788/LOP221648 Cite this Article Set citation alerts
    Jingyu Yang, Yile Shi, Run Zhou, Zimo Liu, Ning Gong, Rijian Chen, Zhijun Ren. Production of Three-Parameter Lommel Beams Using Lohmann-Type Detour Phase-Coding Method[J]. Laser & Optoelectronics Progress, 2023, 60(19): 1909001 Copy Citation Text show less
    References

    [1] Durnin J, Miceli J, Jr, Eberly J H. Diffraction-free beams[J]. Physical Review Letters, 58, 1499-1501(1987).

    [2] Grier D G. A revolution in optical manipulation[J]. Nature, 424, 810-816(2003).

    [3] Fahrbach F O, Rohrbach A. Propagation stability of self-reconstructing Bessel beams enables contrast-enhanced imaging in thick media[J]. Nature Communications, 3, 632-628(2012).

    [4] Betzig E, Patterson G H, Sougrat R et al. Imaging intracellular fluorescent proteins at nanometer resolution[J]. Science, 313, 1642-1645(2006).

    [5] Planchon T A, Gao L, Milkie D E et al. Rapid three-dimensional isotropic imaging of living cells using Bessel beam plane illumination[J]. Nature Methods, 8, 417-423(2011).

    [6] Xie J J, Tang S Y, Chen Y Q et al. Self-reconstruction characteristics of Bessel beam in biological tissue[J]. Chinese Journal of Lasers, 49, 0507302(2022).

    [7] Zhan Q W. Properties of circularly polarized vortex beams[J]. Optics Letters, 31, 867-869(2006).

    [8] Gutiérrez-Vega J C, Iturbe-Castillo M D, Chávez-Cerda S. Alternative formulation for invariant optical fields: Mathieu beams[J]. Optics Letters, 25, 1493-1495(2000).

    [9] Bandres M A, Gutiérrez-Vega J C, Chávez-Cerda S. Parabolic nondiffracting optical wave fields[J]. Optics Letters, 29, 44-46(2004).

    [10] Siviloglou G A, Broky J, Dogariu A et al. Observation of accelerating airy beams[J]. Physical Review Letters, 99, 213901(2007).

    [11] Han H M, Fan Y P, Yang Y C et al. Generation and propagation characteristics of multi-wavelength airy beams based on deformable mirrors[J]. Acta Optica Sinica, 41, 1626001(2021).

    [12] Kotlyar V V, Kovalev A A, Soifer V A. Asymmetric Bessel modes[J]. Optics Letters, 39, 2395-2398(2014).

    [13] Kovalev A A, Kotlyar V V. Diffraction-free Lommel beams[J]. Computer Optics, 38, 188-192(2014).

    [14] Kovalev А А, Kotlyar V V. Lommel modes[J]. Optics Communications, 338, 117-122(2015).

    [15] Yu L, Zhang Y X. Analysis of modal crosstalk for communication in turbulent ocean using Lommel-Gaussian beam[J]. Optics Express, 25, 22565-22574(2017).

    [16] Chen X, Yuan Y B, Yan B L et al. Propagation and self-healing properties of Lommel-Gaussian beam through atmospheric turbulence[J]. Optoelectronics Letters, 17, 572-576(2021).

    [17] Yan J W, Yong K L, Tang S F et al. Comparison of propagation characteristics between super Gaussian and Gaussian vortex beams in air[J]. Acta Optica Sinica, 40, 0201002(2020).

    [18] Zhang J Q, Zhai Y W, Fu S Y et al. Propagation properties of radially-polarized vector beams under a turbulent atmosphere[J]. Acta Optica Sinica, 40, 1101001(2020).

    [19] Wei H Y, Yan J L, Jia P et al. Spiral phase spectrum of focused Bessel beams in atmospheric turbulence channel[J]. Acta Optica Sinica, 40, 2401001(2020).

    [20] Yu L, Hu B B, Zhang Y X. Intensity of vortex modes carried by Lommel beam in weak-to-strong non-Kolmogorov turbulence[J]. Optics Express, 25, 19538-19547(2017).

    [21] Wang S L, Yang D H, Zhu Y et al. Capacity analysis of oceanic channels with localized Lommel-Gaussian vortex beams[J]. Applied Optics, 60, 4135-4142(2021).

    [22] Lu Z H, Yan B L, Chang K et al. Space division multiplexing technology based on transverse wavenumber of Lommel-Gaussian beam[J]. Optics Communications, 488, 126835(2021).

    [23] Zhao Q, Gong L, Li Y M. Shaping diffraction-free Lommel beams with digital binary amplitude masks[J]. Applied Optics, 54, 7553-7558(2015).

    [24] Tamura H, Torii Y. Enhancement of the Lohmann-type computer-generated hologram encoded by direct multilevel search algorithm[J]. Optical Review, 19, 131-141(2012).

    [25] Wang Y Z, Zhang Y, Xue R et al. The FFT computer-generated hologram and its reconstruction by detour phase encoding[J]. Infrared Technology, 26, 57-59(2004).

    [26] Yang J Y, Ren Z J, Huang W J et al. Complex non-diffraction beams generated using binary computational holography[J]. Chinese Optics, 15, 14-21(2022).

    [27] Shi Y L, Wang H, Li Y et al. Practical method for color computer-generated rainbow holograms of real-existing objects[J]. Applied Optics, 48, 4219-4226(2009).

    [28] Shi Y L, Wang H, Wu Q. Color transmission analysis of color computer-generated holography[J]. Applied Optics, 51, 4768-4774(2012).

    Jingyu Yang, Yile Shi, Run Zhou, Zimo Liu, Ning Gong, Rijian Chen, Zhijun Ren. Production of Three-Parameter Lommel Beams Using Lohmann-Type Detour Phase-Coding Method[J]. Laser & Optoelectronics Progress, 2023, 60(19): 1909001
    Download Citation