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Electron-impact excitation at small scattering angles: The Lassettre limit and attendant normalization of measured relative differential cross sections - art. no. 012709

机译:小散射角下的电子冲击激发:Lassettre极限和随之而来的相对微分横截面的归一化-艺术。没有。 012709

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The recent generalized Lassettre expansion (GLE) [Phys. Rev. Lett. 81, 961 (1998)] employing only a single Regge pole is used to demonstrate the applicability of the Lassettre limit theorem over the entire electron impact energy a without the involvement of the nonphysical region of the apparent generalized oscillator strength (AGOS). At forward scattering the GLE yields the unique long-sought-after normalization cm-ve to the optical oscillator strength of the measured relative electron differential cross sections (DCS's) through the AGOS. Optically allowed transitions in H, He, Xe, and N2O are used to illustrate the normalization procedure. We conclude that the GLE together with the momentum dispersion method of Haffad et al. [Phys. Rev. Lett 76, 2456 (1996)] now constitute a set of invaluable methods for use in guiding electron DCS measurements, including the identification of incorrectly normalized and/or spuriously behaved data in the difficult to measure small angular regime. It is hoped that this paper will inspire more measurements of DCS's at zero-angle scattering, since currently very few such measurements are available. [References: 63]
机译:最近的广义Lassettre展开(GLE)[Phys。牧师[81,961(1998)]仅使用一个Regge极来证明Lassettre极限定理在整个电子撞击能量a上的适用性,而没有涉及表观广义振荡器强度(AGOS)的非物理区域。在正向散射时,GLE产生了唯一的长期归一化cm-ve,它对应于通过AGOS测得的相对电子微分截面(DCS)的光学振荡器强度。 H,He,Xe和N2O中光学允许的跃迁用于说明归一化过程。我们得出的结论是,GLE与Haffad等人的动量扩散方法一起。 [物理Rev. Lett 76,2456(1996)]现在构成了一套用于指导电子DCS测量的宝贵方法,包括在难以测量的小角度范围内识别错误归一化和/或伪造的数据。希望本文会激发零角度散射下DCS的更多测量,因为目前很少有此类测量。 [参考:63]

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