Smith Stanley M, Li Xiaosong, Markevitch Alexei N, Romanov Dmitri A, Levis Robert J, Schlegel H Bernhard
Department of Chemistry, Wayne State University, Detroit, MI 48202, USA.
J Phys Chem A. 2005 Nov 24;109(46):10527-34. doi: 10.1021/jp053696x.
Time-dependent Hartree-Fock theory has been used to study the electronic optical response of a series of linear polyene cations (+1 and +2) in strong laser fields. The interaction of ethylene, butadiene, and hexatriene, with pulsed and CW fields corresponding to 8.75 x 10(13) W/cm(2) and 760 nm, have been calculated using the 6-31G(d,p) basis set. Nonadiabatic processes including nonlinear response of the dipole moment to the field and non-resonant energy deposition into excited states were more pronounced for the monocations in comparison with dications. For a given charge state and geometry, the nonadiabatic effects in the charge distribution and instantaneous dipole increased with the length of the polyene. For pulsed fields, the instantaneous dipole continued to oscillate after the field returned to zero and corresponded to a non-resonant electronic excitation involving primarily the lowest electronic transition. For a given molecule and fixed charge state, the degree of nonadiabatic coupling and excitation was greater for geometries with lower excitation energies.
含时哈特里-福克理论已被用于研究一系列线性多烯阳离子(+1和+2)在强激光场中的电光响应。使用6-31G(d,p)基组计算了乙烯、丁二烯和己三烯与对应于8.75×10(13)W/cm(2)和760nm的脉冲场及连续波场的相互作用。与二价阳离子相比,包括偶极矩对场的非线性响应以及非共振能量沉积到激发态在内的非绝热过程在单价阳离子中更为显著。对于给定的电荷态和几何结构,电荷分布和瞬时偶极中的非绝热效应随多烯长度的增加而增大。对于脉冲场,当场回到零时,瞬时偶极继续振荡,这对应于主要涉及最低电子跃迁的非共振电子激发。对于给定的分子和固定的电荷态,激发能较低的几何结构的非绝热耦合和激发程度更大。