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The Faddeev-Merkuriev Differential Equations (MFE) and Multichannel 3-Body Scattering Systems

机译:Faddeev-Merkuriev微分方程(MFE)和多通道3体散射系统

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摘要

Numerical implementation of the modified Faddeev Equation (MFE) is presented in some detail. The Faddeev channel wave function displays unique properties of each and every open channel, respectively. In particular, near resonant energies, the structures of the resonances are beautifully displayed, from which, the life-time of the resonances can be determined by simply using the uncertainty principle. The phase shift matrix, or the K-matrix, provides unique information for each and every resonance. This information enables the identification of the physical formation mechanism of the Gailitis resonances. A few of these resonances, previously known as the mysterious shape resonances, have occurred in a number of different collision systems. The Gailitis resonances are actually produced by a quantized Stark-effect within the various collision systems. Since the Stark-effect is a universal phenomenon, the Gailitis resonances are expected to occur in much broader classes of collision systems. We will present the results of a precision calculation using the MFE method in sufficient detail for interested students who wish to explore the mysteries of nature with a powerful theoretical tool.
机译:详细介绍了改进的Faddeev方程(MFE)的数值实现。 Faddeev通道波函数分别显示每个打开的通道的独特属性。特别是,在共振能量附近,可以很好地显示共振的结构,由此可以通过简单地使用不确定性原理来确定共振的寿命。相移矩阵或K矩阵为每个谐振提供唯一的信息。该信息使得能够识别盖尔炎共振的物理形成机制。这些共振中的一些,以前称为神秘形状共振,已经发生在许多不同的碰撞系统中。盖尔炎共振实际上是由各种碰撞系统中的量化斯塔克效应产生的。由于斯塔克效应是普遍现象,因此,盖尔特氏菌共振预计会在更广泛的碰撞系统中发生。对于感兴趣的希望使用强大的理论工具探索自然之谜的学生,我们将详细介绍使用MFE方法进行精确计算的结果。

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  • 来源
    《Atoms》 |2016年第2期|共页
  • 作者

    Chi Yu Hu;

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  • 原文格式 PDF
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  • 中图分类 生理学;
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  • 入库时间 2022-08-18 08:13:41

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