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Manipulation of Resonance-Enhanced Multiphoton-Ionization Photoelectron Spectroscopy by Two Time-Delayed Femtosecond Laser Pulses

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【作者】 卢晨晖张诗按孙真荣

【Author】 LU Chen-Hui;ZHANG Shi-An;SUN Zhen-Rong;State Key Laboratory of Precision Spectroscopy,and Department of Physics,East China Normal University;

【机构】 State Key Laboratory of Precision Spectroscopy,and Department of Physics,East China Normal University

【摘要】 We theoretically demonstrate that the(2+1) resonance-enhanced multiphoton-ionization(REMPI) photoelectron spectrum in a cesium(Cs) atom can be effectively manipulated by two time-delayed femtosecond laser pulses,involving its photoelectron spectral structure and photoelectron energy.We show that the photoelectron spectrum exhibits interference fringes and the fringe spacing is determined by the time delay of the two laser pulses,and the photoelectron energy is periodically modulated and the modulation period is determined by the two-photon transition frequency of the excited state.Finally,we utilize the power spectrum of the two time-delayed laser pulses and the two-photon transition probability of the excited state to respectively explain the modulations of the photoelectron spectrum and photoelectron energy.

【Abstract】 We theoretically demonstrate that the(2+1) resonance-enhanced multiphoton-ionization(REMPI) photoelectron spectrum in a cesium(Cs) atom can be effectively manipulated by two time-delayed femtosecond laser pulses,involving its photoelectron spectral structure and photoelectron energy.We show that the photoelectron spectrum exhibits interference fringes and the fringe spacing is determined by the time delay of the two laser pulses,and the photoelectron energy is periodically modulated and the modulation period is determined by the two-photon transition frequency of the excited state.Finally,we utilize the power spectrum of the two time-delayed laser pulses and the two-photon transition probability of the excited state to respectively explain the modulations of the photoelectron spectrum and photoelectron energy.

【基金】 Supported by the National Natural Science Foundation of China under Grant Nos 11004060,11027403 and 51132004;the Shanghai Rising-Star Program(No 12QA1400900)
  • 【文献出处】 Chinese Physics Letters ,中国物理快报(英文版) , 编辑部邮箱 ,2013年11期
  • 【分类号】TN249
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