An asymptotic DSM theory for high-energy near-tip bremsstrahlung

D. Jakubassa-Amundsen
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引用次数: 3

Abstract

The Dirac–Sommerfeld–Maue theory for relativistic electron–nucleus bremsstrahlung at the short-wavelength limit is extended to cover an energy range from 0 to 3 MeV of the outgoing electron, irrespective of collision energy. This is achieved by using an asymptotic representation of the Sommerfeld–Maue function for the impinging electron, valid at energies above 50 MeV, as well as a partial-wave expansion for the final electronic state. The model is used to show that the analytical Sommerfeld–Maue theory is applicable for the calculation of the singly differential cross section, if the energy of the scattered electron exceeds about 3 MeV.
高能近尖轫致的渐近DSM理论
dirac - sommerfield - maue理论在短波长极限下的相对论电子-核轫致辐射被扩展到涵盖0到3mev的出射电子能量范围,而不考虑碰撞能量。这是通过使用碰撞电子的Sommerfeld-Maue函数的渐近表示来实现的,该函数在能量高于50 MeV时有效,以及最终电子状态的部分波展开。该模型表明,当散射电子的能量超过约3 MeV时,解析式Sommerfeld-Maue理论适用于单微分截面的计算。
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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