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Large-amplitude nuclear motion formulated in terms of dissipation of quantum fluctuations

机译:在量子波动耗散方面配制的大幅度核动作

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The potential-barrier penetrability and quasi-stationary thermal-decay rate of a metastable state are formulated in terms of microscopic quantum diffusion. Apart from linear coupling in momentum between the collective and internal subsystems, the formalism embraces the more general case of linear couplings in both the momentum and the coordinates. The developed formalism is then used for describing the process of projectile-nucleus capture by a target nucleus at incident energies near and below the Coulomb barrier. The capture partial probability, which determines the cross section for formation of a dinuclear system, is derived in analytical form. The total and partial capture cross sections, mean and root-mean-square angular momenta of the formed dinuclear system, astrophysical -factors, logarithmic derivatives, and barrier distributions are derived for various reactions. Also investigated are the effects of nuclear static deformation and neutron transfer between the interacting nuclei on the capture cross section and its isotopic dependence, and the entrance-channel effects on the capture process. The results of calculations for reactions involving both spherical and deformed nuclei are in good agreement with available experimental data.
机译:在微观量子扩散方面配制了亚稳态的潜在阻隔渗透性和亚稳态的准静止热衰减速率。除了集体和内部子系统之间的势头中的线性耦合外,形式主义包括势力和坐标中的线性联轴器的更常例情况。然后使用开发的形式主义来描述靶核在库仑屏障附近和下方的入射能中的射伤核捕获的过程。捕获部分概率确定用于形成DINUCLY系统的横截面,以分析形式得出。为各种反应导出了形成的二核系统,天体物理 - 因子,对数衍生物和屏障分布的总捕获横截面,平均和均方方角动度。还研究了核静态变形和中子转移在捕获横截面上的核静态变形和中子转移的影响及其同位素依赖性,以及对捕获过程的入口效应。涉及球形和变形核的反应的计算结果与可用的实验数据吻合良好。

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