Chinese Optics, Volume. 16, Issue 2, 329(2023)

Double doughnut-shaped focal spots with controllable position in axial direction

Yu-yuan TIAN1, Jia-qi ZHANG1, Xiao-tong JIANG1, Mei-yu SUN1、*, Qiang SHI1,2、*, and Lin-wei ZHU1
Author Affiliations
  • 1School of Physics and Optoelectronic Engineering, Ludong University, Yantai 264025, China
  • 2Yantai Magie-Nano Technology Co. Ltd, Yantai 264006, China
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    References(45)

    [1] YOUNGWORTH K S, BROWN T G. Focusing of high numerical aperture cylindrical-vector beams[J]. Optics Express, 7, 77-87(2000).

    [2] WANG S C, LI X P. Wavefront manipulation of tightly focused cylindrical vector beams and its applications[J]. Chinese Optics, 9, 185-202(2016).

    [3] ZHOU ZH H, TAN Q F, JIN G F. Multiple 3D optical trapping using higher polarization order axially-symmetric polarized beams[J]. Chinese Optics, 3, 52-56(2010).

    [4] GAN Z S, CAO Y Y, EVANS R A, et al. Three-dimensional deep sub-diffraction optical beam lithography with 9 nm feature size[J]. Nature Communications, 4, 2061(2013).

    [5] HELL S W, WICHMANN J. Breaking the diffraction resolution limit by stimulated emission: stimulated-emission-depletion fluorescence microscopy[J]. Optics Letters, 19, 780-782(1994).

    [6] KOTLYAR V V, ALMAZOV A A, KHONINA S N, et al. Generation of phase singularity through diffracting a plane or Gaussian beam by a spiral phase plate[J]. Journal of the Optical Society of America A, 22, 849-861(2005).

    [7] KHONINA S N, USTINOV A V, LOGACHEV V I, et al. Properties of vortex light fields generated by generalized spiral phase plates[J]. Physical Review A, 101, 043829(2020).

    [8] KHONINA S N, PODLIPNOV V V, KARPEEV S V, et al. Spectral control of the orbital angular momentum of a laser beam based on 3D properties of spiral phase plates fabricated for an infrared wavelength[J]. Optics Express, 28, 18407-18417(2020).

    [9] GAO W J, WANG W B, ZHU SH Q. Obtaining hollow beam using dislocation grating[J]. Acta Optica Sinica, 18, 1467-1469(1998).

    [10] ZHANG SH F, JIANG SH, DONG L, . High accuracy interferometric star tracker based on diffraction grating[J]. Chinese Optics, 14, 1368-1377(2021).

    [11] TAN ZH H, WENG X Y, SUI G R, . Multi-focal spots formed by the modulation of double ring-shape vortex phase plate[J]. Optical Instruments, 35, 46-50(2013).

    [12] CAI ZH H, WANG X K, HU H X, . Calibration of single optical wedge compensation test system error by computer generation hologram[J]. Chinese Optics, 15, 90-100(2022).

    [13] HAN J, INTARAVANNE Y, MA A N, et al. Optical metasurfaces for generation and superposition of optical ring vortex beams[J]. Laser & Photonics Reviews, 14, 2000146(2020).

    [14] LI H, HU D J, QIN F, . Principle and application of metasurface optical field modulation of atomic layer thickness[J]. Chinese Optics, 14, 851-866(2021).

    [15] YU J J, ZHOU CH H, JIA W, et al. Circular Dammann grating under high numerical aperture focusing[J]. Applied Optics, 51, 994-999(2012).

    [16] YU J J, ZHOU CH H, JIA W, et al. Generation of tightly focused twin Bessel beams using circular Dammann gratings under radial polarization incidence[J]. Optics Communications, 285, 4166-4170(2012).

    [17] XU L Q, WANG C W, QI X B, et al. Femtosecond laser direct writing continuous phase vortex gratings with proportionally distributed diffraction energy[J]. Applied Physics Letters, 119, 131101(2021).

    [18] YU J J, ZHOU CH H, JIA W, et al. Generation of dipole vortex array using spiral Dammann zone plates[J]. Applied Optics, 51, 6799-6804(2012).

    [19] YU J J, ZHOU CH H, JIA W, et al. Three-dimensional Dammann vortex array with tunable topological charge[J]. Applied Optics, 51, 2485-2490(2012).

    [20] LI M Y, LI W L, LI H Y, et al. Controllable design of super-oscillatory lenses with multiple sub-diffraction-limit foci[J]. Scientific Reports, 7, 1335(2017).

    [21] WU ZH X, DENG H, LI X X, et al. Generation of subdiffraction longitudinal bifoci by shaping a radially polarized wave[J]. Applied Optics, 59, 7841-7845(2020).

    [22] BADLOE T, KIM I, KIM Y, et al. Electrically tunable bifocal Metalens with diffraction-limited focusing and imaging at visible wavelengths[J]. Advanced Science, 8, 2102646(2021).

    [23] SABATYAN A, EBRAHIMI H. Modified photon sieve as a high-performance bifocal and trifocal diffractive optical element[J]. Journal of the Optical Society of America A, 35, 1692-1700(2018).

    [24] JI SH ZH, ZHU L W, SUN M Y, . Axial two focus zone plate under tight foucsing conditions[J]. Acta Optica Sinica, 35, 0305003(2015).

    [25] CHEN Y Y, LI J S, ZHANG H R, et al. Focusing and propagation properties of Bessel–Gaussian beam with a power-order mixing helical–conical phase wavefront[J]. Applied Optics, 60, 929-934(2021).

    [26] HUI Y F, CUI ZH W, LI Y X, et al. Propagation and dynamical characteristics of a Bessel–Gaussian beam in a chiral medium[J]. Journal of the Optical Society of America A, 35, 1299-1305(2018).

    [27] LI CH H, MAIER S A, REN H R. Optical vortices in nanophotonics[J]. Chinese Optics, 14, 792-811(2021).

    [28] DAI Y Y, ANTONELLO J, BOOTH M J. Calibration of a phase-only spatial light modulator for both phase and retardance modulation[J]. Optics Express, 27, 17912-17926(2019).

    [29] LI SH Q, XU X W, VEETIL R M, et al. Phase-only transmissive spatial light modulator based on tunable dielectric metasurface[J]. Science, 364, 1087-1090(2019).

    [30] LIU Q, LIU T, YANG SH M, et al. Validation of vectorial theories for the focusing of high numerical aperture Fresnel zone plates[J]. Optics Communications, 429, 119-126(2018).

    [31] ZHUANG J L, ZHANG L P, DENG D M. Tight-focusing properties of linearly polarized circular Airy Gaussian vortex beam[J]. Optics Letters, 45, 296-299(2020).

    [32] HU Y F, LIU X, JIN M K, et al. Dielectric metasurface zone plate for the generation of focusing vortex beams[J]. PhotoniX, 2, 10(2021).

    [33] CHEN L X. Quantum discord of thermal two-photon orbital angular momentum state: mimicking teleportation to transmit an image[J]. Light:Science & Applications, 10, 148(2021).

    [34] HU K Y, XIAO G Z, ZHANG Y, . Double-beam fiber optical trap experiments based on supercontinuum laser[J]. Chinese Optics, 10, 370-375(2017).

    [35] MING X Y, GUO Q, XUE ZH K, . A femtosecond laser-inscribed fine-core long-period grating with low temperature sensitivity[J]. Chinese Optics, 13, 737-744(2020).

    [36] WANG S C, WEI CH, FENG Y H, et al. Dual-shot dynamics and ultimate frequency of all-optical magnetic recording on GdFeCo[J]. Light:Science & Applications, 10, 8(2021).

    [37] RICHARDS B, WOLF E. Electromagnetic diffraction in optical systems, II. Structure of the image field in an aplanatic system[J]. Proceedings of the Royal Society A:Mathematical, Physical and Engineering Sciences, 253, 358-379(1959).

    [38] WOLF E. Electromagnetic diffraction in optical systems I. An integral representation of the image field[J]. Proceedings of the Royal Society A:Mathematical, Physical and Engineering Sciences, 253, 349-357(1959).

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

    [40] CAO Y Y, XIE F, ZHANG P D, . Dual-beam super-resolution direct laser writing nanofabrication technology[J]. Opto-Electronic Engineering, 44, 1133-1145(2017).

    [41] LI X P, CAO Y Y, TIAN N, et al. Multifocal optical nanoscopy for big data recording at 30 TB capacity and gigabits/second data rate[J]. Optica, 2, 567-570(2015).

    [42] ZHU L W, CAO Y Y, CHEN Q Q, et al. Near-perfect fidelity polarization-encoded multilayer optical data storage based on aligned gold nanorods[J]. Opto-Electronic Advances, 4, 210002(2021).

    [43] GAO Y F, XIA X Y, LIU L N, et al. Axial gradient excitation accelerates volumetric imaging of two-photon microscopy[J]. Photonics Research, 10, 687-696(2022).

    [44] COMSTOCK M J, WHITLEY K D, JIA H F, et al. Direct observation of structure-function relationship in a nucleic acid-processing enzyme[J]. Science, 348, 352-354(2015).

    [45] MUDRY E, LE MOAL E, FERRAND P, et al. Isotropic diffraction-limited focusing using a single objective lens[J]. Physical Review Letters, 105, 203903(2010).

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    Yu-yuan TIAN, Jia-qi ZHANG, Xiao-tong JIANG, Mei-yu SUN, Qiang SHI, Lin-wei ZHU. Double doughnut-shaped focal spots with controllable position in axial direction[J]. Chinese Optics, 2023, 16(2): 329

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    Paper Information

    Category: Original Article

    Received: Mar. 8, 2022

    Accepted: Jun. 28, 2022

    Published Online: Apr. 4, 2023

    The Author Email:

    DOI:10.37188/CO.2022-0036

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