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Scattering and Its Applications to Various Atomic Processes: Elastic Scattering, Resonances, Photoabsorption, Rydberg States, and Opacity of the Atmosphere of the Sun and Stellar Objects

机译:散射及其对各种原子过程的应用:弹性散射,共振,光吸收,Rydberg状态和太阳和恒星物体气氛的不透明度

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A scattering process can be a natural process or a process carried out in a laboratory. The scattering of particles from targets has resulted in important discoveries in physics. We discuss various scattering theories of electrons and positrons and their applications to elastic scattering, resonances, photoabsorption, excitation, and solar and stellar atmospheres. Among the most commonly employed approaches are the Kohn variational principle, close-coupling approximation, method of polarized orbitals, R -matrix formulation, and hybrid theory. In every formulation, an attempt is made to include exchange, long-range and short-range correlations, and to make the approach variationally correct. The present formulation, namely, hybrid theory, which is discussed in greater detail compared to other approximations, includes exchange, long-range correlations, and short-range correlations at the same time, and is variationally correct. It was applied to calculate the phase shifts for elastic scattering, the resonance parameters of two-electron systems, photoabsorption in two-electron systems, excitation of atomic hydrogen by an electron and positron impact, and to study the opacity of the Sun’s atmosphere. Calculations of polarizabilities, Rydberg states, and bound states of atoms are also discussed.
机译:散射过程可以是自然过程或在实验室中进行的过程。靶从靶标散射导致物理学中的重要发现。我们讨论了电子和积极的各种散射理论及其应用于弹性散射,共振,光吸收,励磁和太阳能和恒星大气压。在最常用的方法中是KOHN变分原理,近耦合近似,偏振轨道的方法,R-MATRIX制剂和混合理论。在每种配方中,尝试包括交换,远程和短距离相关性,并使该方法变差正确。与其他近似相比,将更详细地讨论的本制定,即杂交理论,包括交换,远程相关性和相同的短距离相关性,并且变差正确。它被应用于计算弹性散射的相移,双电子系统的共振参数,两电子系统中的光吸收,电子和正电子撞击的原子氢的激发,以及研究太阳气氛的不透明性。还讨论了偏光性,Rydberg状态和原子的约束状态。

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