Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Leonid Goryachev"'
Autor:
Georgiy Rogozhnikov, Leonid Goryachev, Boris A. Vyskubenko, Sergey P. Ilyin, Anatoliy Kalashnik, Yuriy Adamenkov, Tatiana Rakhimova, Yuriy V. Kolobyanin
Publikováno v:
XVI International Symposium on Gas Flow, Chemical Lasers, and High-Power Lasers.
The paper reports on experimental studies of the active medium gain in supersonic electric-discharge oxygen-iodine laser (DOIL) based on traveling mw discharge. The measurements have included: absolute concentration, yield, and energy efficiency of p
Autor:
Valentin I. Efremov, Yuriy Adamenkov, Boris A. Vyskubenko, Vladimir V. Buzoverya, A. M. Kalashnik, Yu V Savin, G. S. Rogozhnikov, Alexander Adamenkov, Sergei P. Ilyin, Leonid A. Vdovkin, Yuriy V. Kolobyanin, Evgeniy A. Kudryashov, Vladimir Bakshin, Tatyana Rakhimova, Yu. A. Mankelevich, Nikolay Popov, Leonid Goryachev
Publikováno v:
36th AIAA Plasmadynamics and Lasers Conference.
Autor:
Sergey P. Ilyin, Yu. A. Adamenkov, A. M. Kalashnik, Vladimir V. Egorov, Nikolay Popov, G. S. Rogozhnikov, Leonid Goryachev, Boris A. Vyskubenko, Evgeniy A. Kudryashov, Yuriy V. Kolobyanin, Anatoly A. Adamenkov, Tatyana Rakhimova, Yuri V. Savin, Yuri A. Mankelevich
Publikováno v:
SPIE Proceedings.
Experimental and theoretical studies of singlet oxygen excitation in traveling microwave discharge (TMW) are presented. Singlet oxygen O2(a1Δg) concentrations and atomic oxygen mole fraction have been measured for different pressures, input powers a
Autor:
Leonid Goryachev, Yuriy Savin, Nikolay Popov, Tatyana Rakhimova, Yuri A. Mankelevich, Yuriy Adamenkov
Publikováno v:
35th AIAA Plasmadynamics and Lasers Conference.
Autor:
V. V. Yegorov, Boris A. Vyskubenko, Yuri V. Savin, Sergei P. Ilyin, Yu. A. Adamenkov, Yu V Kolobyanin, Leonid Goryachev, Victor V. Bakshin, Evgeniy A. Kudryashov, Anatoly A. Adamenkov, Vladimir V. Buzoverya
Publikováno v:
SPIE Proceedings.
The work cites the experimental data on a small-scale Microwave Discharge Singlet Oxygen Generator. It was shown that a steady-state moving microwave discharge in the plasmatrone with a coaxial cavity resonator allows obtaining of the (1Δg) singlet