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首页> 外文期刊>Journal of Experimental and Theoretical Physics >Formation of an Effective Electric Field in Track Regions During the Stopping of Fast Heavy Charged Particles in Materials
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Formation of an Effective Electric Field in Track Regions During the Stopping of Fast Heavy Charged Particles in Materials

机译:物料中快速重带电粒子停止过程中轨道区域中有效电场的形成

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摘要

A microscopic approach is used to study the formation of an electric field near the trajectories of fast heavy charged particles propagating in various materials. The analysis is based on determining the space-time distribution function of the fast 250L?electrons generated when heavy ions are stopped in materials and the electric current produced by them. The spatial dependence of the electric field strength is determined at various times. The results are used to analyze the process of electric field energy transfer to the ionic subsystem. The spatial distribution of the energy acquired by the ionic subsystem from the electric field is determined over its characteristic lifetime. A mechanism is proposed to explain the formation of track regions both as a result of the higher local heating of the ionic subsystem and as a result of the possible irreversible displacement of the atoms from nodal points.
机译:微观方法用于研究在各种材料中传播的快速重电荷粒子的轨迹附近的电场的形成。该分析是基于确定材料中重离子停止时生成的快速the 250L L电子的时空分布函数以及它们产生的电流的。在不同的时间确定电场强度的空间依赖性。结果用于分析电场能量转移到离子子系统的过程。由离子子系统从电场获取的能量的空间分布在其特征寿命内确定。提出了一种机制来解释轨道区域的形成,这既是由于离子子系统的较高局部加热的结果,也是由于原子从节点可能发生的不可逆位移所致。

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