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钐原子的两步激发共振光电离光谱
引用本文:赵洪英,戴长建,关锋. 钐原子的两步激发共振光电离光谱[J]. 物理学报, 2009, 58(1): 215-222
作者姓名:赵洪英  戴长建  关锋
作者单位:显示材料与光电器件教育部重点实验室,天津 300191;天津理工大学理学院,天津 300384
基金项目:国家自然科学基金(批准号:10574098, 10674102)和天津市自然科学基金(批准号:05YFJMJC05200) 资助的课题.
摘    要:采用两步激发共振光电离技术研究了Sm原子的偶宇称高激发态光谱.实验采用了两条激发路线:1)第一束激光的波长固定在478.44nm以便将Sm原子从4f66s27F1]态激发至4f66s6p[7D1]态,再用第二束激光使其波长从480nm扫描至530nm,将Sm原子进一步激发至待测的高激发态;2)第一束激光的波长固定在574.8关键词:Sm原子光谱分步激发共振电离

关 键 词:Sm原子  光谱  分步激发  共振电离
收稿时间:2008-05-06
修稿时间:2008-06-06

Two-step resonant photoionization spectra of Sm atom
Zhao Hong-Ying,Dai Chang-Jian,Guan Feng. Two-step resonant photoionization spectra of Sm atom[J]. Acta Physica Sinica, 2009, 58(1): 215-222
Authors:Zhao Hong-Ying  Dai Chang-Jian  Guan Feng
Abstract:Resonant ionization spectra of Sm atom are studied with a two-step photoexcitation and photoionization method. Two different excitation paths are carried out as the following: In the path 1, the first laser whose wavelength is fixed at 478.44nm excites the Sm atom from the 4f66s27F1] state to the 4f66s6p[7D1] state,and then the second laser whose wavelength λ2 is scanned from 480nm to 530nm excites it further to the high-lying state with even parity. In the path 2, the first laser whose wavelength is fixed at 574.81nm excites the Sm atom from the 4f66s27F2] state to the 4f66s6p[5G3] state,and then the second laser whose wavelength λ2 is scanned from 460nm to 470.5nm excites it further to the high-lying state with even parity. These Sm atoms in the high-lying state are probed by photoionization via the third laser. All together 26 and 76 states of Sm atom in the 39465—39932 cm-1 and the 40000—42010 cm-1 energy region, respectively, have been detected below the first ionization limit. The energy levels and relative strengths of these states have been determined. Among them, 51 states are newly discovered, while the rest agree well with the values published in literature. In addition, efforts are also made to determine their spectral designation.
Keywords:Sm atom   spectrum   stepwise excitation   resonant ionization
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