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Muonium formation dynamics in radiolytic tracks

机译:辐射轨道中的形成动力学

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Computer simulations are described of the evolution of radiolytic tracks in liquid alkanes following muon implantation. The programs predict time-dependent cation and muonium yields due to electron capture as well as the amplitudes of the muon and muonium precession signals. The variation of these quantities with muon stopping distance and applied electric field is investigated. Simulations for hexane, iso-octane and neopentane, covering 3 orders of magnitude in electron mobility, are presented. Particular attention is paid to the extent to which the delay to muonium formation can explain the reported missing fractions and to predicting the electric-field effects which might be tested in new experiments. (C) 2000 Elsevier Science B.V. All rights reserved. [References: 13]
机译:计算机模拟描述了μ子注入后液态烷烃中放射性轨道的演变。该程序可预测由于电子捕获以及μ和μ进动信号的幅度而导致的时间依赖性阳离子和mu的产率。研究了这些量随μ子截止距离和施加电场的变化。提出了模拟正己烷,异辛烷和新戊烷的电子迁移率,涵盖了三个数量级。特别要注意的是,延缓形成which的程度可以解释所报告的缺失部分,并预测可以在新实验中测试的电场效应。 (C)2000 Elsevier Science B.V.保留所有权利。 [参考:13]

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