• Acta Optica Sinica
  • Vol. 42, Issue 8, 0823001 (2022)
Zhiqiang Liu, Yiyao Hu, and Mao Ye*
Author Affiliations
  • School of Optoelectronics Science and Engineering, University of Electronic Science and Technology of China, Chengdu, Sichuan 611731, China
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    DOI: 10.3788/AOS202242.0823001 Cite this Article Set citation alerts
    Zhiqiang Liu, Yiyao Hu, Mao Ye. Liquid Crystal Axicon[J]. Acta Optica Sinica, 2022, 42(8): 0823001 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] 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).

    [3] Chen X L, Wang X Y, Wang L et al. Stimulated Raman scattering signal generation in a scattering medium using self-reconstructing Bessel beams[J]. Photonics Research, 8, 929-939(2020).

    [4] Pu J X, Zhang H H, Nemoto S. Lens axicons illuminated by Gaussian beams for generation of uniform-axial intensity Bessel fields[J]. Optical Engineering, 39, 803-807(2000).

    [5] Chattrapiban N, Rogers E A, Cofield D et al. Generation of nondiffracting Bessel beams by use of a spatial light modulator[J]. Optics Letters, 28, 2183-2185(2003).

    [6] McLeod E, Hopkins A B, Arnold C B. Multiscale Bessel beams generated by a tunable acoustic gradient index of refraction lens[J]. Optics Letters, 31, 3155-3157(2006).

    [7] Milne G. Jeffries G D M, Chiu D T. Tunable generation of Bessel beams with a fluidic axicon[J]. Applied Physics Letters, 92, 261101(2008).

    [8] Xie Z, Armbruster V, Grosjean T. Axicon on a gradient index lens (AXIGRIN): integrated optical bench for Bessel beam generation from a point-like source[J]. Applied Optics, 53, 6103-6107(2014).

    [9] Lan T C, Lan R H, Chen X X et al. Research on liquid crystal lens hill climbing autofocus algorithm[J]. Acta Optica Sinica, 40, 1411003(2020).

    [10] Kawamura M, Ichimura Y, Sugawara T. Liquid crystal lens with tunable conical lens properties[J]. Japanese Journal of Applied Physics, 60, 042001(2021).

    [11] Saikaley A, Chebbi B, Golub I. Imaging properties of three refractive axicons[J]. Applied Optics, 52, 6910-6918(2013).

    [12] Khonina S N, Volotovsky S G. Application axicons in a large-aperture focusing system[J]. Optical Memory and Neural Networks, 23, 201-217(2014).

    [13] Arimoto R, Saloma C, Tanaka T et al. Imaging properties of axicon in a scanning optical system[J]. Applied Optics, 31, 6653-6657(1992).

    [14] Garcés-Chávez V. McGloin D, Melville H, et al. Simultaneous micromanipulation in multiple planes using a self-reconstructing light beam[J]. Nature, 419, 145-147(2002).

    [15] Hafizi B, Esarey E, Sprangle P. Laser-driven acceleration with Bessel beams[J]. Physical Review E, 55, 3539-3545(1997).

    [16] Tidwell S C, Ford D H, Kimura W D. Transporting and focusing radially polarized laser beams[J]. Optical Engineering, 31, 1527-1531(1992).

    [17] Erde’lyi M. Generation of diffraction-free beams for applications in optical microlithography[J]. Journal of Vacuum Science & Technology B: Microelectronics and Nanometer Structures, 15, 287(1997).

    [18] Ding Z, Ren H, Zhao Y et al. High-resolution optical coherence tomography over a large depth range with an axicon lens[J]. Optics Letters, 27, 243-245(2002).

    [19] Lee K S, Rolland J P. Bessel beam spectral-domain high-resolution optical coherence tomography with micro-optic axicon providing extended focusing range[J]. Optics Letters, 33, 1696-1698(2008).