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Density and temperature characterization of long-scale length, near-critical density controlled plasma produced from ultra-low density plastic foam

机译:长尺度长度,近乎关键密度控制等离子体的密度和温度表征由超低密度塑料泡沫产生的近临界密度控制等离子体

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The ability to produce long-scale length (i.e. millimeter scale-length), homogeneous plasmas is of interest in studying a wide range of fundamental plasma processes. We present here a validated experimental platform to create and diagnose uniform plasmas with a density close or above the critical density. The target consists of a polyimide tube filled with an ultra low-density plastic foam where it was heated by x-rays, produced by a long pulse laser irradiating a copper foil placed at one end of the tube. The density and temperature of the ionized foam was retrieved by using x-ray radiography and proton radiography was used to verify the uniformity of the plasma. Plasma temperatures of 5-10?eV and densities around 10(21)?cm(-3) are measured. This well-characterized platform of uniform density and temperature plasma is of interest for experiments using large-scale laser platforms conducting High Energy Density Physics investigations.
机译:产生长尺度长度(即毫米刻度长度),均相等离子体的能力对研究各种基本的血浆过程感兴趣。我们在这里介绍了一个经过验证的实验平台,用于创造和诊断均匀的等离子体,密度关闭或高于临界密度。该靶由填充有超低密度塑料泡沫的聚酰亚胺管组成,其中通过X射线加热,由长脉冲激光照射放置在管的一端的铜箔产生。通过使用X射线放射仪检索电离泡沫的密度和温度,并使用质子射线照相来验证等离子体的均匀性。测量5-10°的血浆温度和约10(21)℃(-3)的密度。这种特征在于使用大型激光平台进行高能量密度物理研究的实验感兴趣的均匀密度和温度等离子体平台。

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