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首页> 外文期刊>Physical Review, B. Condensed Matter >Computer simulations for shock-compressed liquid deuterium: Failure of density-functional theory and molecular dynamics - art. no. 174102
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Computer simulations for shock-compressed liquid deuterium: Failure of density-functional theory and molecular dynamics - art. no. 174102

机译:冲击压缩液态氘的计算机模拟:密度泛函理论和分子动力学的失败-艺术。没有。 174102

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摘要

We show that the disagreement of recent laser driven shock wave experiments for liquid deuterium with Hugoniots calculated with the generalized gradient approximation molecular dynamics (GGA-MD) method stems from the underestimate of the metalization density associated with density functional theory (DFT). This leads to an enhanced degree of thermally induced molecular dissociation with the result that computer simulations fail to achieve the compression observed experimentally. Scaling of the GGA-MD Hugoniot to hypothetical GW Hugoniot results, using the ratio of volumes at which the GW and DFT band gaps close, leads to a prediction in good agreement with experiment. [References: 30]
机译:我们表明,最近的液态氘氘激光器的激光驱动冲击波实验与通过广义梯度近似分子动力学(GGA-MD)方法计算得到的Hugoniots的分歧源于与密度泛函理论(DFT)相关的金属化密度的低估。这导致热诱导分子解离的程度提高,结果计算机模拟无法实现实验观察到的压缩。将GGA-MD Hugoniot缩放到假设的GW Hugoniot结果,使用GW和DFT带隙闭合的体积比得出的预测与实验非常吻合。 [参考:30]

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