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Collision Dynamics of Hydroxyl and Proton at 15eV
ZHU Yun, ZHANG Xiumei, WANG Zhiping
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS    2014, 31 (5): 602-608.  
Abstract289)      PDF (1877KB)(1132)      
Under the frame of time-dependent density functional theory( TDDFT) and molecular dynamics,we studied microscopic electronic-ionic association dynamics in collision between hydroxyl and proton which moves toward molecular axis of hydroxyl with 15 eV initial kinetic energy. Energies of projectile and target,electron and vibration excitations of target and real time distribution of electron density are identified. It is found that proton captures electrons of hydroxyl in collision and it rebounds from the target with loss of 26.7% of initial kinetic energy. While the kinetic energy of hydroxyl increases and hydroxyl moves toward to numerical boundary accompanied with stretch oscillation. Hydroxyl loses 1% electrons and exists as neutral and +1 valence forms with 93% and 7%probabilities respectively.
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Radiations of C4 with Two Structures in Laser Field
ZHU Yun, LU Chao, WANG Zhiping
CHINESE JOURNAL OF COMPUTATIONAL PHYSICS    2012, 29 (5): 781-785.  
Abstract219)      PDF (692KB)(990)      
With time-dependent density functional theory and molecular dynamics excitations of linear and rhombic C4 in intense laser field are explored.It is found that electrons of 1incar C4 obtain mote enelrgy while ions of rhombic C4 get more from the 1aser filed. Ionization is enhanced as C4 owns 8 linear structure. As laser polarization is along the x axis there is only Dx excitation of a linear C4 while dipole oscillations of a rhombic C4 in x and y directions are excited.
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