Zobrazeno 1 - 10
of 14
pro vyhledávání: '"S. N. Pevny"'
Publikováno v:
Plasma Physics Reports. 48:111-120
Publikováno v:
Quantum Electronics. 42:677-679
A scheme of an iodine laser with two different intracavity space — time modulators based on electrooptic PLZT ceramics is experimentally studied. It is shown that lasing can occur in different angular directions with the use of both modulators. The
Autor:
Gennadi A. Kirillov, A. B. Smirnov, Yu. V. Dolgopolov, S. M. Kulikov, Stanislav A. Sukharev, Gennady G. Kochemasov, S. N. Pevny, A. M. Dudov, A. F. Shkapa, S.P. Smyshlyaev
Publikováno v:
Laser and Particle Beams. 17:765-772
We present the results of the experimental testing of the laser facility LAMBDA, created and built at the Institute of Experimental Physics of the Russian Federal Nuclear Center for generation of quasi-steady-state laser fields in microvolumes.The fa
Autor:
S. N. Pevny, S. P. Smyshlyaev, Fedor A. Starikov, Vladimir K. Ladagin, Yu. V. Dolgopolov, Gennady G. Kochemasov, Stanislav A. Sukharev, Gennadi A. Kirillov, N. N. Gerasimenko, A. F. Shkapa, L I Zykov, Stanislav M. Kulikov, A. M. Dudov
Publikováno v:
5th International Workshop on Laser and Fiber-Optical Networks Modeling, 2003. Proceedings of LFNM 2003..
Summary form only given results of simulations and experiments on a high-power double-pass explosively pumped photo-dissociation iodine laser (EPDL) with phase conjugation (PC) are presented. Laser system consists of master oscillator, two exploding
Autor:
Gennadi A. Kirillov, Gennady G. Kochemasov, A. V. Kopalkin, L. I. Zykov, S. A. Kovaldov, N. N. Gerasimenko, S. P. Smyshlyaev, Yu. V. Dolgopolov, Stanislav A. Sukharev, Fedor A. Starikov, Vladimir K. Ladagin, S. N. Pevny, A. F. Shkapa, Stanislav M. Kulikov, A. M. Dudov
Publikováno v:
SPIE Proceedings.
A non-steady-state theoretical and mathematical model and a complex of computer codes have been developed for modeling a high-power double-pass explosively pumped photo-dissociation iodine laser (EPDL) with phase conjugation (PC) at SBS. The model an
Autor:
Fedor A. Starikov, Yu. V. Dolgopolov, A. M. Dudov, Natalia N. Gerasimenko, Gennadi A. Kirillov, Gennady G. Kochemasov, Stanislav M. Kulikov, Vladimir K. Ladagin, S. N. Pevny, A. F. Shkapa, Sergey P. Smyshlyaev, Stanislav A. Sukharev, L. I. Zykov
Publikováno v:
SPIE Proceedings.
Autor:
A. F. Shkapa, Stanislav M. Kulikov, S. P. Smyshlyaev, Gennadi A. Kirillov, Vladimir K. Ladagin, Yu. V. Dolgopolov, Fedor A. Starikov, A. N. Manachinsky, S. N. Pevny, Gennady G. Kochemasov, A. M. Dudov, L. I. Zykov, Stanislav A. Sukharev
Publikováno v:
International Conference on Lasers, Applications, and Technologies 2002: Advanced Lasers and Systems.
A non-steady-state theoretical and mathematical model and a complex of computer codes have been developed for modeling a high-power double-pass explosively pumped photo-dissociation iodine laser (EPDL) with phase conjunction (PC) at SBS. The model an
Autor:
S. N. Pevny, Gennady G. Kochemasov, Stanislav A. Sukharev, V. A. Eroshenko, Gennadi A. Kirillov, Stanislav M. Kulikov
Publikováno v:
SPIE Proceedings.
Radiation of a shock wave front proved to be very powerful light source for pumping of high power lasers. Particularly, explosively pumped iodine photodissociation lasers (EPIL) are nowadays well developed type of device of multikilojoule level, rath
Autor:
S.P. Smyshlyaev, S. A. Sukharev, Yu. V. Dolgopolov, A. F. Shkapa, N. N. Rukavishnikov, G. G. Kochemasov, A. M. Dudov, S. M. Kulikov, A. B. Smirnov, V. A. Eroshenko, S. N. Pevny
Publikováno v:
The 13th international conference on laser interactions and related plasma phenomena.
The results concerning laser radiation source development capable of focusing radiation into a region of wavelength order designated for obtaining the quasistationary (τ∼10−9−10−10 s) fields with strength of 109−1010 V/cm to investigate at
Publikováno v:
AIP Conference Proceedings.
The amplifier channel energetics of high power iodine laser pumped by the radiation of shock wave front is treated. Conditions are discussed when super‐high light field can be obtained by focusing the phase‐conjugation of laser radiation.