Dynamical Pair Production at Sub-Barrier Energies for Light Nuclei

T. Settlemyre, Hua Zheng, A. Bonasera
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引用次数: 1

Abstract

In the collision of two heavy ions, the strong repulsion coming from the Coulomb field is enough to produce e+e− pair(s) from vacuum fluctuations. The energy is provided by the kinetic energy of the ions and the Coulomb interaction at the production point. If, for instance, the electron is located at the center of mass (C.M.) of the two ions moving along the z-axis, and the positron is at a distance x from the electron, the ions can be accelerated towards each other since the Coulomb barrier is lowered by the presence of the electron. This screening results in an increase in the kinetic energy of the colliding ions and may result in an increase in the fusion probability of light ions above the adiabatic limit.
轻核亚势垒能下的动力学对产生
在两个重离子碰撞中,库仑场产生的强烈斥力足以产生真空涨落中的e+e−对。能量是由离子的动能和产生点的库仑相互作用提供的。例如,如果电子位于沿z轴运动的两个离子的质心(cm),而正电子与电子的距离为x,则由于电子的存在降低了库仑势垒,离子可以相互加速。这种筛选导致碰撞离子的动能增加,并可能导致光离子在绝热极限以上的聚变概率增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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