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TY - CONF AU - Drozdovsky, A.A. AU - Bogdanov, A.V. AU - Drozdovsky, S.A. AU - Gavrilin, R. AU - Kantsyrev, A.V. AU - Panyushkin, V.A. AU - Roudskoy, I. AU - Sasorov, P.V. AU - Savin, S.M. AU - Yanenko, V.V. ED - Kuzin, Maksim V. ED - Schaa, Volker RW TI - The Research of Plasma Lens with Discharge Initiation by the Electron Beam J2 - Proc. of RUPAC2018, Protvino, Russia, 01-05 October 2018 C1 - Protvino, Russia T2 - Russian Particle Accelerator Conference T3 - 26 LA - english AB - At the present time, active works are under-way for creating compact laser (electron and proton) accelerators. For them, it is timely to solve problems of transportation and focusing of beams in the plasma lens discharges of the Z-pinch type*. For effective focusing it is necessary to investigate under what conditions of discharge initiation a fairly uniform discharge is formed. In ITEP studies of the dynamics of the plasma in the lens with the initiation of the discharge the electron beam. An experimental setup is used, which includes a source of an electron beam with an energy of 250 KeV at a current of up to 100 A. Main method of observing the dynamics of the plasma discharge is the registration of own plasma radiation in the visible and ultraviolet range. Studies have shown that the process of development of the discharge initiated by the electron beam is significantly different from that in the usual method of z-pinch formation. The plasma distribution in the cross section is quite uniform in a large time interval. This distribution is desirable for the purpose of creating a plasma lens with linear focusing forces. PB - JACoW Publishing CP - Geneva, Switzerland SP - 211 EP - 213 KW - plasma KW - electron KW - experiment KW - luminosity KW - radiation DA - 2018/11 PY - 2018 SN - 978-3-95450-197-7 DO - 10.18429/JACoW-RUPAC2018-TUPSA30 UR - http://jacow.org/rupac2018/papers/tupsa30.pdf ER -