Zobrazeno 1 - 6
of 6
pro vyhledávání: '"V. K. Rerikh"'
Autor:
V. K. Rerikh, A. Balabaev, Anton Losev, I. A. Khrisanov, Yu. A. Satov, A. Shumshurov, A. A. Vasilyev, K. N. Makarov
Publikováno v:
Instruments and Experimental Techniques. 60:556-561
Experiments on the irradiation of a carbon target with СО2-laser pulses in the free-running mode at a radiation-flux density of 1.3 × 1011 W/cm2 and the time-of-flight technique for measuring the characteristics of the plasma ion component are des
Studying the mechanisms of steel sheet perforation by the radiation of a continuous-wave fiber laser
Autor:
G. G. Gladush, A. G. Krasyukov, V. I. Golovichev, V. K. Rerikh, M. D. Taran, S. V. Gvozdev, A. Yu. Lysikov, A F Glova
Publikováno v:
Bulletin of the Russian Academy of Sciences: Physics. 80:393-396
Aspects of steel sheet perforation are studied experimentally. Calculations show that the mechanisms of thin sheet perforation change as the focal spot size is increased at a constant laser power. If the spot is small, the melt is removed and the fil
Autor:
Andrei N Starostin, V. N. Babichev, A. F. Pal, M. D. Taran, Anatoly Filippov, V. K. Rerikh, V. E. Cherkovets
Publikováno v:
Plasma Physics Reports. 41:895-904
Results from numerical studies of a non-self-sustained gas discharge containing micrometer dust grains are presented. The non-self-sustained discharge (NSSD) was controlled by a stationary fast electron beam. The numerical model of an NSSD is based o
Autor:
V. E. Cherkovets, Yu. B. Smakovskii, A. A. Rupasov, Yu. A. Satov, G. S. Volkov, V. K. Rerikh, V. I. Zaitsev, K. N. Makarov, Anatoly P. Napartovich, A. E. Stepanov
Publikováno v:
Plasma Physics Reports. 36:129-141
Results are presented from experimental and theoretical studies of the efficiency of using a CO2 laser to create a high-power source of 13- to 14-nm EUV radiation for lithography. For a laser intensity of ∼2 × 1011 W/cm2, a conversion efficiency o
Autor:
Andrei N Starostin, S. G. Nishchuk, T. A. Pikuz, K. N. Makarov, A. Ya. Faenov, A. E. Stepanov, Yu. A. Satov, V. K. Rerikh, I. Yu. Skobelev, Yu. B. Smakovskii, S. V. Khomenko
Publikováno v:
Journal of Experimental and Theoretical Physics Letters. 72:7-10
The evolution of the ion composition of a laser plasma during its expansion over a large distance is studied. The plasma is produced by a TIR CO2 laser with a pulse energy up to 100 J and duration of ∼20 ns. X-ray diagnostics with the use of a spec
Publikováno v:
Technical Physics Letters. 29:191-193
Time evolution of the X-ray spectrum of a lead ion plasma generated by CO2 laser pulses with an energy of 100 J and a duration of 15 ns was measured using an X-ray polychromator with six channels covering the quantum energy range from 180 to 1850 eV.