162
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Controllable splitting and bidirectional rotating of optical vortices due to cross phase

, &
Pages 734-740 | Received 08 Feb 2022, Accepted 29 May 2022, Published online: 12 Jun 2022

References

  • Nye JF, Berry MV. Dislocations in wave trains. Proc R Soc London Ser A Math Phys Eng Sci. 1974;336:165–190.
  • Harada K, Kamimura O, Kasai H, et al. Direct observation of vortex dynamics in superconducting films with regular arrays of defects. Science. 1996;274:1167–1170.
  • Roditchev D, Brun C, Serrier-Garcia L, et al. Direct observation of Josephson vortex cores. Nat Phys. 2015;11:332–337.
  • Shinjo T, Okuno T, Hassdorf R, et al. Magnetic vortex core observation in circular dots of permalloy. Science. 2000;289:930–932.
  • Waeyenberge BV, Puzic A, Stoll H, et al. Magnetic vortex core reversal by excitation with short bursts of an alternating field. Nature (London). 2006;444:461–464.
  • Weiler CN, Neely TW, Scherer DR, et al. Spontaneous vortices in the formation of Bose–Einstein condensates. Nature (London). 2008;455:948-U37.
  • Tosi G, Christmann G, Berloff NG, et al. Geometrically locked vortex lattices in semiconductor quantum fluids. Nat Commun. 2012;3:1243.
  • Ma X. Incoherent control of topological charges in nonequilibrium polariton condensates. Phys Rev B. 2016;93. Article ID 035315.
  • Scheuer J, Orenstein M. Optical vortices crystals: spontaneous generation in nonlinear semi-conductor microcavities. Science. 1999;285:230–233.
  • Gibson G, Courtial J, Padgett MJ, et al. Free-space information transfer using light beams carrying orbital angular momentum. Opt Express. 2004;12:5448–5456.
  • Allen L, Padgett MJ, Babiker M. The orbital angular momentum of light. Prog Opt. 1999;39:291–372.
  • Franke-Arnold S, Allen L, Padgett M. Advances in optical angular momentum. Laser Photon Rev. 2008;2:299–313.
  • Indebetouw G. Optical vortices and their propagation. J Mod Opt. 1993;40:73–87.
  • Freund I. Optical vortex trajectories. Opt Commun. 2000;181:19–33.
  • Arlt J. Handedness and azimuthal energy flow of optical vortex beams. J Mod Opt. 2003;50:1573–1580.
  • Bekshaev AY, Mohammed KA, Kurka IA. Transverse energy circulation and the edge diffraction of an optical vortex beam. Appl Opt. 2014;53:B27–B37.
  • Bekshaev AY, Chernykh A, Khoroshun A, et al. Localization and migration of phase singularities in the edge-diffracted optical-vortex beams. J Optics-UK. 2016;18. Article ID 024011.
  • Bekshaev AY, Chernykh A, Khoroshun A, et al. Singular skeleton evolution and topological reactions in edge-diffracted circular optical-vortex beams. Opt Commun. 2017;397:72–83.
  • Bekshaev AY, Khoroshun A, Mikhaylovskaya L. Transformation of the singular skeleton in optical-vortex beams diffracted by a rectilinear phase step. J Optics UK. 2019;21. Article ID 084003.
  • Ferreira QS, Jesus-Silva AJ, Hickmann JM. Fraunhofer diffraction of light with orbital angular momentum by a slit. Opt Lett. 2011;36:3106–3108.
  • Bekshaev AY, Mikhaylovskaya L, Patil S, et al. Optical-vortex diagnostics via Fraunhofer slit diffraction with controllable wavefront curvature. J Opt Soc Am A. 2020;37:780–786.
  • Saitoh K, Hasegawa Y, Hirakawa K, et al. Measuring the orbital angular momentum of electron vortex beams using a forked grating. Phys Rev Lett. 2013;111. Article ID 074801.
  • Dai K, Gao C, Zhong L, et al. Measuring OAM states of light beams with gradually-changing-period gratings. Opt Lett. 2015;40:562–565.
  • Hickmann JM, Soares WC, Chávez-Cerda S. Unveiling a truncated optical lattice associated with a triangular aperture using light's orbital angular momentum. Phys Rev Lett. 2010;105. Article ID 053904.
  • Silva JG, Jesus-Silva AJ, Alencar MARC, et al. Unveiling square and triangular optical lattices: a comparative study. Opt Lett. 2014;39:949–952.
  • Guo C, Lu L, Wang H. Characterizing topological charge of optical vortices by using an annular aperture. Opt Lett. 2009;34:3686–3688.
  • Courtial J, Dholakia K, Allen L, et al. Gaussian beams with very high orbital angular momentum. Opt Commun. 1997;144:210–213.
  • Liang G, Guo Q, Cheng W, et al. Spiraling elliptic beam in nonlocal nonlinear media. Opt Express. 2015;23:24612–24625.
  • Liang G, Zhang H, Fang L, et al. Influence of transverse cross-phases on propagations of optical beams in linear and nonlinear regimes. Laser Photon Rev. 2020;14. Article ID 2000141.
  • Ren Y, Wang C, Liu T, et al. Polygonal shaping and multi-singularity manipulation of optical vortices via high-order cross-phase. Opt Express. 2020;28:26257–26266.
  • Wang C, Ren Y, Liu T, et al. Measurement and shaping of circular Airy vortex via cross-phase. Opt Commun. 2021;497. Article ID 127185.
  • Haus HA. Waves and fields in optoelectronics. New Jersey: Prentice-Hall; 1984.
  • Miller W. Symmetry and separation of variables. United States: Addison-Wesley; 1977.
  • Bekshaev AY, Soskin MS, Vasnetsov MV. An optical vortex as a rotating body: mechanical features of a singular light beam. J Opt A Pure Appl Opt. 2004;6:S170–S174.
  • Liang G, Wang Q. Controllable conversion between Hermite Gaussian and Laguerre Gaussian modes due to cross phase. Opt Express. 2019;27:10684–10691.
  • Liang G, Cheng W. Splitting and rotating of optical vortices due to non-circular symmetry in amplitude and phase distributions of host beams. Phys Lett A. 2020;384. Article ID 126046.
  • Bekshaev AY, Vasnetsov MV, Denisenko VG, et al. Transformation of the orbital angular momentum of a beam with optical vortex in an astigmatic optical system. Jetp Lett. 2002;75:127–130.
  • Bekshaev AY, Soskin MS, Vasnetsov MV. Optical vortex symmetry breakdown and decomposition of the orbital angular momentum of light beams. J Opt Soc Am A. 2003;20:1635–1643.
  • Bekshaev AY, Soskin MS, Vasnetsov MV. Transformation of higher-order optical vortices upon focusing by an astigmatic lens. Opt Commun. 2004;241:237–247.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.