Zobrazeno 1 - 3
of 3
pro vyhledávání: '"G. S. Usachev"'
Autor:
I. V. Aleksandrova, E. R. Koresheva, T. P. Timasheva, A. I. Kupriyashin, I.E. Osipov, A. I. Gromov, S. M. Tolokonnikov, A. I. Nikitenko, E. L. Koshelev, I. D. Timofeev, G. S. Usachev, G. D. Baranov, V. I. Listratov, V. N. Leonov
Publikováno v:
Journal of Russian Laser Research. 28:163-206
We present our results on developing a diagnostic complex for high-precision characterization of the parameters of laser-fusion microobjects, such as microspheres and cryogenic targets (the microobject size is 1–2 mm). The complex operates based on
Autor:
I.E. Osipov, I. D. Timofeev, G. D. Baranov, A.A. Belolipetskiy, V.G. Soloviev, L.S. Yaquzhinskiy, V. I. Listratov, L.A. Rivkis, G. S. Usachev, I. V. Aleksandrova, S.M. Tolokonnikov, E.R. Koresheva, V.P. Veselov
Publikováno v:
Fusion Technology. 38:166-172
In conventional inertial confinement fusion (ICF) a high power laser system is used to compress a cryogenic target and create energy. One of the challenges for ICF cryogenics is producing a homogen...
Autor:
A.A. Belolipetskiy, A. I. Safronov, A. I. Kutergin, E.R. Koresheva, I.V. Aleksandrova, A. I. Nikitenko, Larissa V. Panina, V. A. Kalabuhov, I.E. Osipov, M. Tolley, C. Spindloe, E. L. Koshelev, T. P. Timasheva, C. Edwards, V. I. Chtcherbakov, I. D. Timofeev, G. S. Usachev
Publikováno v:
SPIE Proceedings.
The target factory of an Inertial Fusion Energy (IFE) power plant (or reactor) must supply the targets with a rate of 1-10 Hz including their injection and transport through the chamber. HiPER is a proposed European High Power laser Energy Research f