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首页> 外文期刊>High energy density physics >Shock Hugoniots based on the self-consistent average atom (SCAA) model. Theory and experiments. (Second revision)
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Shock Hugoniots based on the self-consistent average atom (SCAA) model. Theory and experiments. (Second revision)

机译:基于自洽平均原子(SCAA)模型的Shock Hugoniots。理论与实验。 (第二次修订)

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摘要

We use a "self-consistent average atom" (SCAA) model to compute shock Hugoniots for aluminum, iron, molybdenum, strontium, barium and thulium. The pressures and energies include relativistic effects. We make comparisons with the Thomas-Fermi-Dirac (TFD) model and with the available experimental data including pressures, shock and particle speeds and energy deposition. The connection between the usage of the "average atom" (AA) model and "detailed configuration accounting" (DCA) is discussed in the Appendix.
机译:我们使用“自洽平均原子”(SCAA)模型来计算铝,铁,钼,锶,钡和th的休克休氏剂。压力和能量包括相对论效应。我们将其与Thomas-Fermi-Dirac(TFD)模型以及可用的实验数据(包括压力,冲击和粒子速度以及能量沉积)进行比较。附录中讨论了“平均原子”(AA)模型的使用与“详细配置记帐”(DCA)之间的联系。

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