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The influence of laser pulse on the photoabsorption spectra of Li atom in strong external field

The influence of laser pulse on the photoabsorption spectra of Li atom in strong external field
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摘要 Using the time-dependent perturbation theory and the calculation formula of the single- and double-pulse absorption spectra of the atom in strong external fields, we calculate the single- and double-pulse absorption spectra of Li atom in strong magnetic field for different pulse widths. The results show that a pulse of some width can reduce the contribution of the short period closed orbits and eliminate the contribution of the long period orbits. Compared with the single-pulse absorption spectra, we found that for some phase differences, the double-pulse laser absorption spectra are strengthened; while for others, they are reduced. Therefore, we can use the pulse laser to control the oscillation of the absorption spectra and obtain the optimization object. Using the time-dependent perturbation theory and the calculation formula of the single- and double-pulse absorption spectra of the atom in strong external fields, we calculate the single- and double-pulse absorption spectra of Li atom in strong magnetic field for different pulse widths. The results show that a pulse of some width can reduce the contribution of the short period closed orbits and eliminate the contribution of the long period orbits. Compared with the single-pulse absorption spectra, we found that for some phase differences, the double-pulse laser absorption spectra are strengthened; while for others, they are reduced. Therefore, we can use the pulse laser to control the oscillation of the absorption spectra and obtain the optimization object.
出处 《Science China(Physics,Mechanics & Astronomy)》 SCIE EI CAS 2006年第2期178-186,共9页 中国科学:物理学、力学、天文学(英文版)
基金 the National Natural Science Foundation of China (Grant No. 10374061) the Doctoral Research Foundation (Grant No. 202-23000301).
关键词 laser pulse CLOSED ORBIT absorption spectra. laser pulse, closed orbit, absorption spectra.
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