Florido R, Mancini R C, Nagayama T, Tommasini R, Delettrez J A, Regan S P, Yaakobi B
Department of Physics, University of Nevada, Reno, Nevada 89557, USA.
Rev Sci Instrum. 2010 Oct;81(10):10E307. doi: 10.1063/1.3479024.
We present results from the spectral postprocessing of a one-dimensional hydrodynamic simulation of an argon-doped, warm-shell shock-ignition implosion with a detailed atomic and radiation physics model. The argon tracer is added to the deuterium filling in the core for diagnostic purposes. Spectral features in the emergent intensity distribution in the photon energy range of the argon K-shell spectrum that have potential for diagnostic application are discussed.
我们展示了对掺氩的热壳层冲击点火内爆进行一维流体动力学模拟的光谱后处理结果,该模拟采用了详细的原子和辐射物理模型。为了诊断目的,在核心的氘填充物中添加了氩示踪剂。讨论了在氩K壳层光谱的光子能量范围内出射强度分布中的光谱特征,这些特征具有诊断应用潜力。