RU/EN

 

Sergey Ivanovich Kharitonov

151,Molodogvardejskaya, Samara, 443001, Russia.
E-mail: prognoz2007@gmail.com , prognoz@smr.ru

Phone: (007)(846)-332-56-22

 

Казанский

Education and Qualifications:

1993 - defended his thesis and received his degree in physics and mathematics. Thesis: "Asymptotic methods of calculation focusers laser".

2010 - defended his thesis and received the degree of Doctor of Physical and Mathematical Sciences. thesis theme: "Asymptotic methods for calculating the diffraction of coherent electromagnetic radiation diffractive optical elements".

Professional Career

Leading researcher of the liboratori of diffractive optics.

Currently, the main areas research interests:

  1. diffraction and quantum optics;
  2. светотехника.

List of Publications

  1. Soifer V.A., Kazanskiy N.L., Kharitonov S.I. Synthesis of a Binary DOE Focusing into an Arbitrary Curve, Using the Electromagnetic Approximation // Optics and Lasers in Engineering, 1998, vol.29, №№ 4-5, pp. 237-247.
  2. Kazanskiy N.L., Kharitonov S.I., Soifer V.A. Simulation of DOE-aided focusing devices // Optical Memory & Neural Networks, 2000, vol. 9, № 3, pp. 191-200.
  3. Investigation of Lighting Devices Based on Diffractive Optical Elements / Kazanskiy N.L., Kharitonov S.I., Soifer V.A., Volkov A.V. // Optical Memory & Neural Networks, 2000, vol. 9, № 4, pp. 301-312.
  4. Volotovsky SG, Kazansky, N.L., S.I. Kharitonov Methods of scattering theory for solving the diffraction optics / / Computer Optics, 2001, № 21, p. 23-30
  5. DOE to form a line-shaped directivity diagram / Doskolovich L.L., Kazanskiy N.L., Soifer V.A., Kharitonov S.I., Perlo P. // Journal of Modern Optics, 2004, Vol. 51, № 13, pp. 1999-2005.
  6. Asymptotic solutions of the Helmholtz equation for pseudoperiodic structures / Doskolovich LL SI Kharitonov, Kazan NL Tulupova EA Skuratov SA / / Computer Optics, 2005, № 27, p. 50-55.
  7. S.I. Kharitonov, Kazansky N.L. Experimental observation of the motion of the discharge bulb with the discharged gas in an electric field / / Proceedings of Samara Scientific Center RAS, t.13, № 4, p.63-65 (2011).
  8. Kazansky N.L., S.I. Kharitonov "Transmission of spatially limited broadband radially symmetric pulses focused through a thin film," Computer Optics, t.36, № 1, p. 4-13 (2012).
  9. Kazansky N.L., Khonina S.N., S.I. Kharitonov, Perturbation theory for the Schrodinger equation in a periodic medium in the quasimomentum representation, Computer Optics, 36 (1), 21-26 (2012)
  10. Kazansky N.L., Khonina S.N., SI Kharitonov,Energy spectrum of complex low-dimensional heterostructures in the presence of an electric field, Computer Optics, 36 (1), 27-33 (2012)
  11. Khonina S.N., S.I. Kharitonov, Analog of the Rayleigh-Sommerfeld integral for anisotropic and gyrotropic media, Computer Optics, 36 (2), 172-182 (2012)
  12. Khonina S.N. Volotovsky S.G., S.I. Kharitonov, periodic variation of the intensity of the multimode laser beam propagation in anisotropic uniaxial crystals, Proceedings of Samara Scientific Center, Russian Academy of Sciences, 14 (4), 18-27 (2012)
  13. Khonina S.N. Zoteeva O. Kharitonov, S.I., nonparaxial propagation of Gaussian beams at an angle to the axis of the anisotropic crystal, Computer Optics, 36 (3), 346-356 (2012)
  14. Kazansky, N.L., S.I. Kharitonov, Khonina S.N. joint solution of the Klein-Gordon and Maxwell's equations, Computer Optics, 36 (4), 518-526 (2012)
  15. Kazanskiy N.L., Kharitonov S.I., Khonina S.N., Volotovskiy S.G., Strelkov Yu.S.,Simulation of hyperspectrometer on spectral linear variable filters,Computer Optics, 38(2), 256-270 (2014)
  16. Kazanskiy N.L., Kharitonov S.I., Karsakov A.V., Khonina S.N.,Modeling action of a hyperspectrometer based on the Offner scheme within geometric optics, Computer Optics, 38(2), 271-280 (2014)
  17. N.L. Kazanskii, S.N. Khonina, R.V. Skidanov, A.A. Morozov, S.I. Kharitonov, S.G. Volotovskiy,Formation of images using multilevel diffractive lens,Computer Optics, 38(3), 425-434 (2014)
  18. Kazanskiy N.L., Kharitonov S.I., Khonina S.N., Simulation of a hyperspectrometer based on linear spectral filters using vector Bessel beams,Computer Optics, 38(4), 770-776 (2014)
  19. Karpeev S.V., Khonina S.N., Kharitonov S.I.,Study of the diffraction grating on the convex surface as a dispersive element,Computer Optics, 39(2), 211-217 (2015)
  20. Kharitonov S.I., Volotovskiy S.G., Khonina S.N., Kazanskiy N.L.,A differential method for calculating x-ray diffraction by crystals: the scalar theory,Computer Optics, 39(4), 469-479 (2015)
  21. Khonina S.N., Kharitonov S.I.,Comparative investigation of nonparaxial mode propagation along the axis of uniaxial crystal,Journal of Modern Optics, 62(2), 125-134 (2015)
  22. Kazanskiy N.L., Kharitonov S.I., Khonina S.N., Volotovskiy S.G.Simulation of spectral filters used in hyperspectrometer by decomposition on vector Bessel modes,Proc. of SPIE Vol. 9533, Optical Technologies for Telecommunications 2014, edited by Vladimir A. Andreev, Vladimir A. Burdin, Albert H. Sultanov, Oleg G. Morozov, 95330L-7pp (2015); doi: 10.1117/12.2183429
  23. Khonina S.N., Kharitonov S.I.,Comparative investigation of nonparaxial mode propagation along the axis of uniaxial crystal,Journal of Modern Optics, 62(2), 125-134 (2015)