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Effects of rotational degree of freedom on calculations of photoassociation ofHeH(+)systems

机译:旋转自由度对Heh(+)系统的光学淘性计算的影响

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摘要

The role of rotational degree of freedom in calculations of photoassociation (PA) and the accompanying phenomena, that is, multiphoton transitions and above-threshold dissociations (PA-ATDs), of HeH(+)systems is investigated by comparing the numerical results of the one-dimensional (1D) and three-dimensional (3D) models in the framework of the time-dependent quantum wave packet method. It was found that the PA probability of the target state predicted by the 3D model is much smaller than that predicted by the 1D model. In addition, as the bound energies of interaction potential can be shifted by the inclusion of the rotational degree of freedom, the amplitude and frequency of optimized laser pulses obtained based on the 1D model should be changed to some extent to obtain maximal PA probability of the target state in realistic systems. The multiphoton transitions in the 3D case tend to be much easier to be excited. The variational behaviors of the PA-ATD probability vs the initial relative momentum of the two colliding particles, calculated in the 3D model using the optimized laser pulses obtained based on the 1D and 3D models, are found to be nearly coincident with each other, which implies that the continuum-continuum transitions from the initial wave packet tend to be the major dynamics in the PA-ATD process.
机译:在含时量子波包方法的框架下,通过比较一维(1D)和三维(3D)模型的数值结果,研究了旋转自由度在计算HeH(+)系统的光缔合(PA)及其伴随现象,即多光子跃迁和阈值以上解离(PA-ATD)中的作用。结果发现,三维模型预测的目标状态概率远小于一维模型预测的目标状态概率。此外,由于转动自由度的加入可以改变相互作用势的束缚能,因此基于一维模型获得的优化激光脉冲的振幅和频率应该在一定程度上改变,以获得现实系统中目标态的最大功率放大器概率。3D情况下的多光子跃迁往往更容易激发。使用基于一维和三维模型获得的优化激光脉冲,在三维模型中计算的PA-ATD概率与两个碰撞粒子的初始相对动量的变化行为发现彼此几乎一致,这意味着,从初始波包开始的连续-连续转变往往是PA-ATD过程中的主要动力学。

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