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Studies of high energy density in matter driven by heavy ion beams in solid targets

机译:固体靶中重离子束驱动物质的高能密度研究

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By the interaction of intense (10(10) particles/500 ns) relativistic (similar to300 MeV/amu) heavy ion beams with solid targets, large volumes (several cubic millimeters) of strongly coupled plasmas are produced at solid-state densities and temperatures of up to 1 eV, with relevance for equation-of-state (EOS) studies of matter at high energy density and heavy ion-beam-driven inertial confinement fusion (ICF). The time and space profile of the ion beams, focused by the plasma lens to diameters of a minimum of 0.5 mm in order to obtain specific energy depositions of up to about 4 kJ/g, were measured to calculate the energy deposition in the target. In the present work, the plasmas created by ion beam interaction with cryogenic gas crystals and metallic targets are studied, among other methods, by backlighting shadowgraphy and electrical conductivity measurements. The experiments are coupled with two-dimensional hydrodynamic simulations. [References: 11]
机译:通过相对论性强(10(10)个粒子/ 500 ns)(重于300 MeV / amu)的重离子束与固体靶的相互作用,在固态密度和温度下会产生大体积(几立方毫米)的强耦合等离子体高达1 eV,与状态方程(EOS)研究在高能量密度和重离子束驱动的惯性约束聚变(ICF)下的相关性。测量了由等离子透镜聚焦到最小直径为0.5 mm的离子束的时间和空间分布,以获得高达约4 kJ / g的比能沉积,以计算目标中的能量沉积。在当前的工作中,除其他方法外,还通过背光阴影图和电导率测量研究了离子束与低温气相晶体和金属靶相互作用产生的等离子体。实验与二维流体动力学模拟相结合。 [参考:11]

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