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Ustinov Andrey Vladimirovich

Publications in Math-Net.Ru

  1. Changing the trajectory of Airy beam sets with spatial carriers

    Computer Optics, 46:5 (2022),  724–732
  2. Properties of off-axis caustics of autofocusing chirp beams

    Computer Optics, 44:5 (2020),  721–727
  3. An analysis of the spatial spectrum of Hermite-Gauss beams with embedded optical vortex

    Computer Optics, 41:5 (2017),  617–625
  4. Focal-plane field when lighting double-ring phase elements

    Computer Optics, 41:4 (2017),  515–520
  5. Analysis of focusing light by a harmonic diffractive lens taking into account the refractive index dispersion

    Computer Optics, 41:3 (2017),  338–347
  6. Transformation of radiation by the generalized parabolic (aspherical) lens

    Comp. nanotechnol., 2016, no. 4,  21–27
  7. Design and analysis of a three-wave diffraction focusing doublet

    Computer Optics, 40:2 (2016),  173–178
  8. Diffraction by a conical axicon considering multiple internal reflections

    Computer Optics, 39:4 (2015),  500–507
  9. Comparative study of the spectral characteristics of aspheric lenses

    Computer Optics, 39:3 (2015),  363–369
  10. Analysis of interference of cylindrical laser beams generated by ring optical elements with a vortex phase at sharp focusing

    Computer Optics, 39:1 (2015),  12–25
  11. Calculation of diffraction of laser radiation by a two-dimensional (cylindrical) axicon with the high numerical aperture in various models

    Computer Optics, 38:4 (2014),  670–680
  12. Nanofocusing by sharp edges

    Computer Optics, 38:4 (2014),  629–637
  13. Fracxicon as hybrid element between the parabolic lens and the linear axicon

    Computer Optics, 38:3 (2014),  402–411
  14. Analysis of laser beam diffraction by axicon with the numerical aperture above limiting

    Computer Optics, 38:2 (2014),  213–222
  15. Analysis of flat beam diffraction by divergent fracxicon in nonparaxial mode

    Computer Optics, 38:1 (2014),  42–50
  16. Diffraction of a gaussian beam on the generalized lens

    Computer Optics, 37:4 (2013),  443–450
  17. Generalized lens: calculation of distribution on the optical axis

    Computer Optics, 37:3 (2013),  307–315


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