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首页> 外文期刊>IEEE Transactions on Plasma Science >Fundamental studies of intense heavy-ion beam interaction with solid targets
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Fundamental studies of intense heavy-ion beam interaction with solid targets

机译:重离子束与固体靶相互作用的基础研究

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摘要

Intense (10/sup 11/ particles/1 /spl mu/s /spl sim/300 MeV/u) heavy ion beams are generated in the heavy-ion synchrotron (SIS) of the GSI-Darmstadt facility. Large volumes of strongly coupled plasmas are produced by heavy ion beam interaction with solid targets, with plasma densities close to the solid state, pressures of about 100 kbar, and temperatures of up to 1 eV, with relevance for equation of state (EOS) of matter, astrophysics, and low-entropy shock compression of solids. The plasmas created by ion beam interaction with metallic converters and cryogenic crystals were studied by backlighting shadowgraphy and by time-resolved spectroscopy in the visible and vacuum ultraviolet ranges. Low entropy weak shock waves induced by the ion beams in the metal-plexiglass multilayered targets were visualized by time resolved schlieren measurements, revealing induced multiple shockwaves with pressures higher than 15 kbar in a plexiglass window and propagation velocities up to 35% higher than the speed of sound in plexiglass at room temperature. To get an insight into the plasma dynamics, both types of experiments are simulated by the BIG-2 two-dimensional hydrodynamic code.
机译:在GSI-Darmstadt设施的重离子同步加速器(SIS)中产生强烈的(10 / sup 11 /粒子/ 1 / spl mu / s / spl sim / 300 MeV / u)重离子束。大量的强耦合等离子体是由重离子束与固体靶相互作用产生的,等离子体密度接近固态,压力约为100 kbar,温度高达1 eV,与状态方程(EOS)有关物质,天体物理学和固体的低熵冲击压缩。离子束与金属转换器和低温晶体相互作用产生的等离子体,通过在可见光和真空紫外范围内通过背光阴影影印和时间分辨光谱学进行了研究。通过时间分辨的schlieren测量,可视化了金属有机玻璃多层靶中离子束引起的低熵弱冲击波,揭示了有机玻璃窗口中压力大于15 kbar的多重激波,传播速度比速度高35%。室温下有机玻璃中的声音。为了深入了解等离子体动力学,两种类型的实验均通过BIG-2二维流体力学代码进行模拟。

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