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Malikov Mikhail Maksimovich

Publications in Math-Net.Ru

  1. Агломерация и покрытие серебром наночастиц диоксида циркония в жидкостях под воздействием слабого лазерного излучения

    TVT, 63:2 (2025),  246–250
  2. Laser ablation of a titanium target in water silver nitrate solution

    Kvantovaya Elektronika, 53:6 (2023),  464–468
  3. Specificity of micro- and nanoproducts of titanium laser ablation in pure water

    Kvantovaya Elektronika, 52:6 (2022),  587–592
  4. Kinetics and model of metal vapor lasers excited by an inductive pulsed-periodic high-freaquency discharge

    TVT, 60:5 (2022),  644–656
  5. Deposition of silver on the surface of microparticles of zirconium and molybdenum oxides during their synthesis by laser ablation in liquid

    Kvantovaya Elektronika, 51:6 (2021),  544–548
  6. Composition, morphology characteristics and optical properties of molybdenum oxide nanostructures synthesized by the laser ablation method in liquid

    TVT, 55:6 (2017),  700–703
  7. Copper vapor laser pumped by pulse-periodic high-frequency discharge

    TVT, 55:5 (2017),  678–684
  8. Formation of hollow micro- and nanostructures of zirconia by laser ablation of metal in liquid

    TVT, 53:1 (2015),  98–104
  9. Optical, structural and morphological properties of zirconia nanoparticles prepared by laser ablation in liquids

    Kvantovaya Elektronika, 44:9 (2014),  845–851
  10. Thermophysical Model of Metal-Vapor Lasers with Discharge Chambers of Cylindrical and Coaxial Geometry

    TVT, 52:3 (2014),  442–449
  11. Influence of UV and visible laser light on the structure and composition of layered organic – inorganic zinc and copper nanocomposites

    Kvantovaya Elektronika, 43:6 (2013),  563–566
  12. Synthesis of a layered organo-inorganic copper nanocomposite by laser ablation in liquid media

    TVT, 51:2 (2013),  311–314
  13. The features of the synthesis of $\mathrm{ZnO}$ nanostructures by laser ablation of zinc in water-surfactant solutions

    TVT, 50:3 (2012),  392–400
  14. Investigation of the Characteristics of a Colloidal Solution and Its Solid Phase Obtained through Ablation of Zinc in Water by High-Power Radiation from a Copper Vapor Laser

    TVT, 49:5 (2011),  701–706
  15. Output energy parameters of a KULON-10Cu-UV laser

    Kvantovaya Elektronika, 39:5 (2009),  405–409
  16. Experimental study of multipass copper vapour laser amplifiers

    Kvantovaya Elektronika, 38:12 (2008),  1121–1126
  17. Energy characteristics of radiation from a KULON-10 Cu-M self-heated technological laser

    Kvantovaya Elektronika, 37:8 (2007),  765–769
  18. Efficient sum-frequency and second harmonic generation in a two-pass copper vapour laser amplifier

    Kvantovaya Elektronika, 35:9 (2005),  844–848
  19. Features of image colouring in a projection microscopebased on a copper vapour laser with an unstable resonatorand a Glan prism

    Kvantovaya Elektronika, 34:6 (2004),  583–588
  20. UV lasing in a multipass copper vapour amplifier – nonlinear crystal system

    Kvantovaya Elektronika, 33:5 (2003),  416–418
  21. Self-terminated laser amplifier with an enhanced peak output pulse power

    Kvantovaya Elektronika, 33:5 (2003),  411–415
  22. Investigation of the summation of copper-vapour laser frequencies

    Kvantovaya Elektronika, 25:9 (1998),  809–813
  23. Laser based on copper vapor with a coaxial discharge chamber

    TVT, 28:3 (1990),  427–432
  24. EMISSION REABSORPTION IN THE HETEROGENEOUS LOW-TEMPERATURE PLASMA

    Zhurnal Tekhnicheskoi Fiziki, 57:1 (1987),  28–36
  25. Self-pumping of the working gas through an electric-discharge metal-vapor laser

    TVT, 23:5 (1985),  966–971
  26. О переносе резонансного излучения

    TVT, 23:4 (1985),  807
  27. К вопросу о применении коаксиальных разрядных камер для ОКГ на парах металлов

    TVT, 23:1 (1985),  193–195
  28. Thermo-physical characteristics of co-axial high-power laser chambers

    TVT, 21:1 (1983),  162–166
  29. Лазер на парах меди с магнитным полем

    TVT, 20:5 (1982),  995–997
  30. Ионизационная неустойчивость несамостоятельного разряда в магнитном поле

    TVT, 17:2 (1979),  431–433
  31. О скорости взаимодействия цезия и $\mathrm{CO}_2$ в газовой смеси быстропроточного лазера

    TVT, 16:3 (1978),  661–662
  32. Экспериментальное исследование электроразрядного лазера со сверхзвуковым течением газа в магнитном поле

    TVT, 15:3 (1977),  635–642
  33. Influence of a $\rm CO_2$ molecular addition on parameters of a $\rm He - \rm Xe$ plasma in a magnetic-field

    TVT, 14:3 (1976),  641–643
  34. Ionization wave of a glow discharge in a turbulent air flow

    TVT, 13:3 (1975),  650–652
  35. Cesium-seeded $\mathrm{CO}_2$ electric-discharge laser

    TVT, 13:1 (1975),  223–224
  36. Волна ионизации в турбулентном потоке газа

    TVT, 12:5 (1974),  947–951
  37. Изучение механизма движения неоднородностей в неравновесной плазме в магнитном поле

    TVT, 10:2 (1972),  227–231
  38. Pulsed model of a magnetohydrodynamic generator having a strongly nonequilibrium plasma

    TVT, 8:6 (1970),  1265–1273
  39. Experimental study of nonequilibrium plasma

    TVT, 8:2 (1970),  260–265
  40. Вращение газа в электрической дуге в продольном магнитном поле

    TVT, 7:3 (1969),  572–574

  41. Errata to the article: UV lasing in a multipass copper vapour amplifier – nonlinear crystal system

    Kvantovaya Elektronika, 33:8 (2003),  750
  42. Errata to the article: Self-terminated laser amplifier with an enhanced peak output pulse power

    Kvantovaya Elektronika, 33:8 (2003),  750
  43. Баланс энергии электронов и возбужденных атомов в плазме лазера на парах меди (№ 3571-В-89 от 30.V.1989)

    TVT, 27:5 (1989),  1036


© Steklov Math. Inst. of RAS, 2026