兆焦耳Git-4发电机上的多级等离子体线上z捏缩配置

B. Etlicher, A. Chuvatin, P. Zehnter, N. Edison, M. Darrigol, D. Friart, C. Nazet, P. Choi, C. Zoita, R. Baksht, I. Datsko, A. Fedunin, A. Shishlov, A. Kim, V. Kokshenev, B. Kovalchuk, A. Russkich, A. Shishlov, M.O. Kosheroi, D. A. Fedin
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引用次数: 0

摘要

在本文中,作者将着重于一个兆焦电感存储发生器与一个多级等离子体在线箍上的耦合。在这种配置中,他们在轴上金属丝上使用了不同的喷气方式。选择这种金属线是为了检查等离子体的条件,在碰撞状态下,这种等离子体将从ne -类Ti中产生有效的x射线激光。为了解系统的动态而进行的第一系列射击的结果将给出。在2 ~ 10 keV范围内工作的10通道PIN二极管阵列记录的x射线上升时间小于2 ns,并且在最大压缩时间下测量了致密等离子体核心的重要硬x射线(> 15 keV)分量。该方案的稳定性将得到增强。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Multi Stage Plasma-on-wire Z-pinch Configuration On The Megajoule Git-4 Generato
In this paper, the authors will emphasize the coupling between a megajoule inductive storage generator with a multi-stage plasma on wire pinch. In this configuration, they used different puff on puff gas injection on a on-axis metallic wire. The wire was chosen to check the plasma conditions which, in a collisional regime, will give an efficient X-ray laser from Ne-like Ti. Results of a first series of shots done to understand the dynamic of the system will be given. The x-ray recorded by a 10 channels PIN diode array working between 2 and 10 keV shows a rise time less then 2 ns and an important hard x-ray (> 15 keV) component from the dense plasma core was measured at maximum compression time. Enhanced stability of the scheme will be shown.
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