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Trials to improve the continuum wavefunctions of Auger electrons emitted from aluminium and oxygen ions using a least squares variational technique

机译:使用最小二乘变分技术尝试改善铝和氧离子发射的俄歇电子的连续波函数

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The least-squares variational method is employed in order to derive iterative improvements upon the wavefunctions of Auger electrons emitted by Aluminum and Oxygen ions. The Auger electrons are considered free electrons seen by the remaining target and not as in the conventional Hartree-Fock programmes through which the continuum wavefunction of the Auger electron was determined by assuming that it occurs in a relatively higher excited state of the related bound system and this proceeds towards the real physical picture. The core potential seen by the Auger electron is evaluated on the basis of the Hartree-Fock orbitals delivered by the conventional Hartree-Fock computer codes. The Auger transition rates are calculated for different configurations of Aluminum and Oxygen ions. Our results show the stability of our variational iteration technique for improving the continuum wavefunctions and consequently the Auger rates of Auger electrons emitted from atoms or ions. [References: 22]
机译:为了最小化铝和氧离子发射的俄歇电子的波函数,采用最小二乘变分法。俄歇电子被认为是剩余目标所看到的自由电子,而不是传统的Hartree-Fock程序那样,通过传统俄亥俄-福克程序,俄歇电子的连续波函数通过假设俄歇电子在相关束缚系统和激发态的相对较高激发态下发生而确定。这朝着真实的物理画面发展。根据传统的Hartree-Fock计算机代码传递的Hartree-Fock轨道评估俄歇电子所看到的核心电势。计算铝和氧离子的不同构型的俄歇跃迁速率。我们的结果表明,我们的变分迭代技术在改善连续波函数以及因此从原子或离子发射的俄歇电子的俄歇速率方面具有稳定性。 [参考:22]

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