首页> 外文期刊>The Open Plasma Physics Journal >Multiframe Interferometry Diagnostic for Time and Space Resolved Free Electron Density Determination in Laser Heated Plasma
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Multiframe Interferometry Diagnostic for Time and Space Resolved Free Electron Density Determination in Laser Heated Plasma

机译:激光加热等离子体中时间和空间分辨自由电子密度测定的多帧干涉测量法诊断

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Whereas the energy loss of ions penetrating cold matter is understood and several theories, codes and tables exist, the interaction with plasma is scarcely investigated and only a few experimental data exist. Therefore the interaction of heavy ions penetrating hot and dense plasma is explored at the GSI Helmholtzzentrum f werionenforschung using powerful lasers to create a plasma and ions from the UNILAC accelerator to probe the target. For the interpretation of the experimental data it is crucial to know the plasma parameters like density and temperature as a function of time and space. Therefore a multiframe laser interferometry has been developed to fulfil the requirements. The set up of the interferometry is presented as well as some results of the free electron density distribution of expanding carbon and aluminium plasma at different times.
机译:尽管可以理解离子穿透冷物质的能量损失,并且存在几种理论,代码和表格,但很少研究与等离子体的相互作用,并且仅存在少量实验数据。因此,在GSI Helmholtzzentrum fwerionenforschung上探索了重离子穿透热和稠密等离子体的相互作用,使用强大的激光从UNILAC加速器产生等离子体和离子来探测目标。为了解释实验数据,至关重要的是要知道诸如密度和温度等等离子体参数随时间和空间的变化。因此,已经开发出多框架激光干涉术来满足要求。介绍了干涉仪的设置,以及在不同时间膨胀的碳和铝等离子体的自由电子密度分布的一些结果。

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