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Volyar Alexandr Vladimirovich

Publications in Math-Net.Ru

  1. Orbital angular momentum burst control in astigmatic structured beams in ABCD-matrix transforms

    Computer Optics, 48:2 (2024),  171–179
  2. Control of giant orbital angular momentum bursts of structured Laguerre-Gaussian beams in a medium with general astigmatism

    Computer Optics, 48:1 (2024),  35–46
  3. Huge spikes and dips of the orbital angular momentum in structured Laguerre-Gaussian beams resistant to simple astigmatism

    Computer Optics, 47:3 (2023),  350–360
  4. Can the radial number of vortex modes control the orbital angular momentum?

    Computer Optics, 46:6 (2022),  853–863
  5. Reconstruction of stable states of spiral vortex beams

    Computer Optics, 46:1 (2022),  5–15
  6. Transformations of structurally stable states of spiral beams subjected to sector perturbations

    Computer Optics, 45:6 (2021),  789–799
  7. Structural stability of spiral beams and fine structure of an energy flow

    Computer Optics, 45:4 (2021),  482–489
  8. Digital analysis of a speckle pattern of chaotic mode composition and restoration of a regular intensity pattern after a multimode fiber

    Computer Optics, 45:2 (2021),  179–189
  9. Digital sorting of Hermite-Gauss beams: mode spectra and topological charge of a perturbed Laguerre-Gauss beam

    Computer Optics, 44:4 (2020),  501–509
  10. Sorting Laguerre-Gaussian beams by radial numbers via intensity moments

    Computer Optics, 44:2 (2020),  155–166
  11. Topological charge of optical vortices and their superpositions

    Computer Optics, 44:2 (2020),  145–154
  12. Determination of microrelief of the sample by singular beams superposition

    Computer Optics, 43:5 (2019),  741–746
  13. Sectorial perturbation of vortex beams: Shannon entropy, orbital angular momentum and topological charge

    Computer Optics, 43:5 (2019),  723–734
  14. Shaping and processing the vortex spectra of singular beams with anomalous orbital angular momentum

    Computer Optics, 43:4 (2019),  517–527
  15. Polarization and topological mode dispersion of optical vortices in circular optical fibers

    Computer Optics, 43:1 (2019),  25–34
  16. Avalanche instability of the orbital angular momentum higher order optical vortices

    Computer Optics, 43:1 (2019),  14–24
  17. Beyond the light intensity or intensity moments and measurements of the vortex spectrum in complex light beams

    Computer Optics, 42:5 (2018),  736–743
  18. MAGNUS OPTIC EFFECT AND FORMATION OF VECTOR CHARACTERISTICS OF WFR FIELD VIA FIBER-CRYSTAL SYSTEM

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 18:24 (1992),  74–77
  19. GEOMETRIC BARRY PHASE FOR OPEN TRAJECTORIES IN PULSE SPACES IN FIBER OPTICS

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 18:22 (1992),  45–48
  20. OSCILLATING INSTABILITY OF BEAM TRAJECTORIES AND POLARIZATION LIGHT STATES IN MULTIMODE FIBER

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 18:8 (1992),  53–57
  21. POLARIZATION OF WAVE-FRONT CONVERSION IN PHOTOREFRACTIVE CRYSTALS

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 17:14 (1991),  10–14
  22. GEOMETRIC PHASE AND REDUCTION OF LIGHT POLARIZATION UNDER WAVE-FRONT CONVERSION IN MULTIMODE FIBERS

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 17:13 (1991),  1–5
  23. Polarization restoration by phase conjugation in photorefractive crystals

    Kvantovaya Elektronika, 18:8 (1991),  956–959
  24. ENERGY-TRANSFER AND DIFFRACTION EFFICIENCY ON HOLOGRAPHIC ELECTROGYRATION LATTICES IN BI12TIO20 CRYSTALS

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 15:4 (1989),  21–24
  25. WAVE PHASE EVOLUTION AFTER THE MULTIMODE LIGHTGUIDE AFFECTED BY PARAMETER FIELD

    Zhurnal Tekhnicheskoi Fiziki, 56:1 (1986),  127–134
  26. ROLE OF TEMPERATURE REACTIONS IN PHASE-TRANSFORMATION FIELDS OF LIGHT WAVES IN MULTIMODE LIGHT GUIDES

    Zhurnal Tekhnicheskoi Fiziki, 54:8 (1984),  1552–1554
  27. UNIVERSAL HOLOGRAPHIC CORRECTION OF LIGHT SIGNALS, MODULATED BY PHASE AND POLARIZATION, IN MULTIMODE LIGHT-GUIDES

    Zhurnal Tekhnicheskoi Fiziki, 53:7 (1983),  1383–1385
  28. Голографический метод коррекции поляризации излучения на выходе волоконных световодов

    Pisma v Zhurnal Tekhnicheskoi Fiziki, 9:21 (1983),  1321–1324


© Steklov Math. Inst. of RAS, 2024