速度空间散射系数及其在反氢复合研究中的应用

Chang, Ordonez
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引用次数: 8

摘要

本文提出了一种计算麦克斯韦场粒子的速度空间摩擦和扩散系数的方法,该方法基于先前论文[Y]中导出的核函数。Chang和C. A. Ordonez,物理学家。[j].等离子体学报,1997,29(2)。系数的原始五重积分表达式被简化为一重积分,可以用于任何库仑对数值。利用弱耦合近似,一元积分可以进一步简化为标准解析表达式。摩擦系数的积分表达式用于预测一个时间尺度,该时间尺度描述了反质子束在正电子等离子体中减速的速率,而两个物质同时被嵌套的Penning陷阱所限制。时间尺度用于考虑在陷阱内实现反氢复合的可能性。然后用摩擦系数和扩散系数推导出计算反质子和正电子之间能量转移率的表达式。该表达式用于说明在考虑到正电子被反质子加热的情况下实现反氢复合。讨论了电场的存在对复合的影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Velocity space scattering coefficients with applications in antihydrogen recombination studies

An approach for calculating velocity space friction and diffusion coefficients with Maxwellian field particles is developed based on a kernel function derived in a previous paper [Y. Chang and C. A. Ordonez, Phys. Plasmas 6, 2947 (1999)]. The original fivefold integral expressions for the coefficients are reduced to onefold integrals, which can be used for any value of the Coulomb logarithm. The onefold integrals can be further reduced to standard analytical expressions by using a weak coupling approximation. The integral expression for the friction coefficient is used to predict a time scale that describes the rate at which a reflecting antiproton beam slows down within a positron plasma, while both species are simultaneously confined by a nested Penning trap. The time scale is used to consider the possibility of achieving antihydrogen recombination within the trap. The friction and diffusion coefficients are then used to derive an expression for calculating the energy transfer rate between antiprotons and positrons. The expression is employed to illustrate achieving antihydrogen recombination while taking into account positron heating by the antiprotons. The effect of the presence of an electric field on recombination is discussed.

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