Search Results - "Parkhomenko, A. I."

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  1. 1

    Transversely Diode-Pumped Metastable Rare Gas Atoms Laser Radiation Amplifier by Parkhomenko, A. I., Shalagin, A. M.

    Published in Optics and spectroscopy (01-03-2024)
    “…A theoretical analysis of a radiation amplifier based on metastable noble gas atoms excited by laser diodes in transverse pumping mode is presented. In the…”
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    Journal Article
  2. 2

    Analytical Model of a Transversely Diode-Pumped Metastable Rare Gas Atoms Laser by Parkhomenko, A. I., Shalagin, A. M.

    Published in Bulletin of the Lebedev Physics Institute (01-08-2023)
    “…The operation of a laser on metastable rare gas atoms with a transverse diode pumping is investigated theoretically. For not too small reflection coefficient…”
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  3. 3

    The Effect of Collisions on the Resonance Fluorescence Spectrum of Three-Level Atoms with a V-Configuration of Levels by Parkhomenko, A. I., Shalagin, A. M.

    Published in Optics and spectroscopy (01-12-2021)
    “…The effect of collisions on the resonance fluorescence spectrum of three-level atoms with a V-configuration of levels when excited by two monochromatic…”
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  4. 4

    Manifestation of the light-induced drift effect in chemically peculiar stellar atmospheres by Parkhomenko, A. I., Shalagin, A. M.

    Published in Astronomy reports (01-02-2013)
    “…We have calculated the factor ( ν g − ν e )/ ν g in the temperature range T = 300–20 000 K for the ions Be + , Mg + , Ca + , C + in atomic hydrogen and for the…”
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  5. 5

    Narrowing of the Absorption Line of Light Alkali Metal Atoms in an Atmosphere of Heavy Inert Gases at Growing Radiation Intensity by Parkhomenko, A. I., Shalagin, A. M.

    Published in Optics and spectroscopy (01-11-2019)
    “…The effect of narrowing of the absorption line of light alkali metal 7 Li and 23 Na atoms present in an atmosphere of heavy inert gas (xenon) with an increase…”
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  6. 6

    On the Possibility of the Precise Test of Interatomic Interaction Potentials Using the Effect of Anomalous Light-Induced Drift by Parkhomenko, A. I., Shalagin, A. M.

    “…The spectral features of the velocity of light-induced drift (LID) of lithium atoms in a neon buffer gas have been theoretically studied using four known ab…”
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  7. 7

    Segregation of Calcium Isotopes in the Atmospheres of CP Stars as a Consequence of Light-Induced Drift by Parkhomenko, A. I., Shalagin, A. M.

    Published in Astronomy reports (01-06-2018)
    “…A mechanism for the segregation of calcium isotopes in the atmospheres of chemically peculiar (CP) stars due to light-induced drift (LID) of singly charged 48…”
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  8. 8

    Separation of chemical elements in the atmospheres of CP stars under the action of light induced drift by Parkhomenko, A. I., Shalagin, A. M.

    Published in Astronomy reports (01-11-2017)
    “…A mechanism for the separation of chemical elements and isotopes in the atmospheres of chemically peculiar (CP) stars due to light-induced drift (LID) of ions…”
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  9. 9

    Spectral anomalies of the light-induced drift of rubidium atoms caused by the velocity dependence of transport collision frequencies by Parkhomenko, A. I., Shalagin, A. M.

    “…The spectral features of the light-induced drift (LID) velocity for rubidium atoms ( 85 Rb and 87 Rb) in an argon buffer medium and in binary buffer mixtures…”
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  10. 10

    Increasing the Generation Efficiency of a Two-Level Gas Laser by Switching from Single-Sided to Double-Sided Transversal Diode Pumping by Parkhomenko, A. I., Shalagin, A. M.

    “…The operation of a two-level gas laser is theoretically studied in schemes with single- and double-sided transversal diode pumping Some analytical formulas,…”
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  11. 11

    Laser Generation without Population Inversion in the Red Wing of the -Line of Alkali Metal Atoms under Resonant Diode Pumping by Parkhomenko, A. I., Shalagin, A. M.

    “…A new method of laser radiation generation without population inversion in the red wing of the -line of alkali metal atoms under resonant absorption of…”
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  12. 12

    Collision-induced amplification of short-wave radiation on transitions to the ground state of atoms by Parkhomenko, A. I., Usol’tsev, A. N., Shalagin, A. M.

    “…A new version of obtaining short-wave lasing on transition between highly excited states and the ground state of active atoms in the buffer gas atmosphere is…”
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