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Electron localization of H_2^+ in a dc electric field

Electron localization of H_2^+ in a dc electric field
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摘要 A dc electric field is utilized to steer the electron motion after the molecular ion H2-+ is excited by an ultrashort ultraviolet laser pulse. The numerical simulation shows that the electron localization distribution and the dissociation control ratio are dependent on the polarization direction and amplitude of the dc electric field. Most electrons of the dissociation state move opposite to the dc electric field and stabilize at the dressed-up potential well, for the dressed-down well is occupied by the electrons of the 1 sσg state. A dc electric field is utilized to steer the electron motion after the molecular ion H2-+ is excited by an ultrashort ultraviolet laser pulse. The numerical simulation shows that the electron localization distribution and the dissociation control ratio are dependent on the polarization direction and amplitude of the dc electric field. Most electrons of the dissociation state move opposite to the dc electric field and stabilize at the dressed-up potential well, for the dressed-down well is occupied by the electrons of the 1 sσg state.
作者 Z M Jia Z N Zeng W T Tang R X Li 贾正茂;曾志男;唐文涛;李儒新(State Key Laboratory of High Field Laser Physics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences;Signal and Information Processing,Jingchu University of Technology)
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2017年第1期170-175,共6页 中国物理B(英文版)
基金 supported by the National Natural Science Foundation of China(Grant Nos.11127901,61521093,11134010,11227902,11222439,and 11274325) the National Basic Research Program of China(Grant No.2011CB808103)
关键词 dissociation localization time dependent Schrdinger equation Coulomb potential ultraviolet laser pulse dissociation localization time dependent Schrdinger equation Coulomb potential ultraviolet laser pulse
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