Dynamics of an Al wire corona of a megaampere Z-pinch

被引:0
|
作者
P. Kubeš
J. Kravárik
O. Renner
E. Krouský
Yu. L. Bakshaev
P. I. Blinov
A. S. Chernenko
E. M. Gordeev
S. A. Dan’ko
V. D. Korolev
A. Yu. Shashkov
机构
[1] Czech Technical University,
[2] Institute of Physics,undefined
[3] Russian Research Centre Kurchatov Institute,undefined
来源
Plasma Physics Reports | 2002年 / 28卷
关键词
Photon Energy; Bright Spot; High Plasma Density; Axial Magnetic Field; Photon Energy Range;
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学科分类号
摘要
It is shown that the development of instabilities in a Z-pinch plasma formed by loading a relatively thick Al wire (an initial diameter of 120 µm and a maximum discharge current of 2–3 MA) is slowed down due to the high plasma density in the wire corona. A cylindrically symmetric, regular, and stable corona surrounding the wire contains a helical formation with a dense, cold, and magnetized plasma. X-ray pulses with a photon energy of several keV and an FWHM duration of 10–20 ns are generated by a few imploded neck structures in the pinch phase of the corona evolution (70–100 ns after the current onset). The main part of X radiation emitted by individual bright spots in the photon energy range 1.5–2.4 keV (up to 40 J at a peak power of 4 GW) consists of the continuum and the bound-bound transition radiation from H-and He-like Al ions. A possible scenario for the axial magnetic field evolution during an X-ray pulse is outlined.
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页码:296 / 302
页数:6
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