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Recurrence spectra of non—hydrogen Rydberg atoms in paralled electric and magnetic fields
引用本文:宋晓红,张秋菊,薛艳丽,赵珂,李玉,林圣路.Recurrence spectra of non—hydrogen Rydberg atoms in paralled electric and magnetic fields[J].中国物理 B,2002,11(7):656-660.
作者姓名:宋晓红  张秋菊  薛艳丽  赵珂  李玉  林圣路
作者单位:Department of Physics, Shandong Normal University, Jinan 250014, China
基金项目:Project supported by the Natural Science Foundation of Shandong Province of China (Grant No Y98A06009)
摘    要:We present a new method for computing the recurrence spectra of n≈40, m=0 lithium Rydberg atoms in strong parallel external electric and magnetic fields. This method is based on an extended closed-orbit theory allowing the computation of the scattering of the electron by the ionic core. We pay particular attention to the scaling properties, which are extremely important for understanding the correspondence between classical and quantum mechanics. The spectra with a constant scaled electric field \tilde F=0.01 and a scaled energy ε=-0.03 are recorded and compared with those of hydrogen obtained by the standard closed-orbit theory. The result shows that the additional strong resonance structures can be interpreted in terms of the core-scattered classical closed orbits.

关 键 词:Rydberg原子  闭合轨道理论  再现光谱
收稿时间:2001-11-29

Recurrence spectra of non-hydrogen Rydberg atoms in parallel electric and magnetic fields
Song Xiao-Hong,Zhang Qiu-Jü,Xue Yan-Li,Zhao Ke,Li Yu,Lin Sheng-Lu.Recurrence spectra of non-hydrogen Rydberg atoms in parallel electric and magnetic fields[J].Chinese Physics B,2002,11(7):656-660.
Authors:Song Xiao-Hong  Zhang Qiu-Jü  Xue Yan-Li  Zhao Ke  Li Yu  Lin Sheng-Lu
Institution:Department of Physics, Shandong Normal University, Jinan 250014, China
Abstract:We present a new method for computing the recurrence spectra of n≈40, m=0 lithium Rydberg atoms in strong parallel external electric and magnetic fields. This method is based on an extended closed-orbit theory allowing the computation of the scattering of the electron by the ionic core. We pay particular attention to the scaling properties, which are extremely important for understanding the correspondence between classical and quantum mechanics. The spectra with a constant scaled electric field \tilde F=0.01 and a scaled energy ε=-0.03 are recorded and compared with those of hydrogen obtained by the standard closed-orbit theory. The result shows that the additional strong resonance structures can be interpreted in terms of the core-scattered classical closed orbits.
Keywords:closed-orbit theory  recurrence spectrum  region-splitting consistent and iterative method  core scattering
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