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One- and two-electron atomic screening in fusion reactions

机译:聚变反应中的一电子和二电子原子筛选

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摘要

Recent laboratory experiments have measured fusion cross sections at center-of-mass energies low enough that the effects of atomic electrons are important. To extract the cross section for bare nuclei from these data (as required for astrophysical applications), it is necessary to understand these screening effects. We present a model in which the evolution of the electron wave function is treated dynamically in the time-dependent Hartree-Fock scheme, while the motion of the nuclei is treated classically. We have calculated screening in the d+2H and d+3He reactions and give the effective screening energy Ue at small internuclear separations as a function of E. The resulting Ue values do not exceed the previously established adiabatic limits, and thus cannot explain the higher screening energies derived from experiment.
机译:最近的实验室实验已经在质心能量处测量了足够低的聚变截面,以至于原子电子的影响很重要。为了从这些数据中提取裸核的横截面(天体物理应用所需),有必要了解这些筛选效果。我们提出了一个模型,其中在依赖时间的Hartree-Fock方案中动态处理电子波函数的演化,而经典地处理原子核的运动。我们已经计算了在d + 2H和d + 3He反应中的筛选,并给出了小核间距下的有效筛选能量Ue作为E的函数。所得的Ue值未超过先前确定的绝热极限,因此无法解释更高的从实验中筛选能量。

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