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Laser-induced molecular rotational dynamics: A high-frequency Floquet approach - art. no. 023409

机译:激光诱导的分子旋转动力学:高频Floquet方法-艺术。没有。 023409

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摘要

The rotational dynamics of a molecule interacting with a linearly polarized intense laser held is investigated. A high-frequency Floquet approach proceeding to an adiabatic separation between "fast" field-oscillation modes and "slow" molecular rotational motion is adopted, which leads to an approximate effective Hamiltonian. A thorough analysis of the validity of the approximation is provided by examining the neglected terms. The HCN molecule, within a linear rigid-rotor description, is taken as an illustration of the model. The anisotropic interaction of the electric-field vector of the intense laser radiation with the permanent dipole moment and the polarizability of the molecule creates aligned pendular states. These states are eigenfunctions of an effective Hamiltonian governed by a cos(2)theta potential (with theta the angle between the molecular axis and the field vector) and serve as a basis for the interpretation and prediction of alignment dynamics. The results show, in particular, the difference in the alignment properties of linear HCN when excited by sudden versus adiabatic laser pulses, where adiabatic transport from field-fret to pendular states can be evoked. [References: 45]
机译:研究了与线性偏振强激光相互作用的分子的旋转动力学。采用高频浮球法进行“快速”场振荡模式和“缓慢”分子旋转运动之间的绝热分离,这导致近似有效的哈密顿量。通过检查被忽略的项,可以对逼近的有效性进行彻底的分析。线性刚性转子描述中的HCN分子用作模型的说明。强激光辐射的电场矢量与永久偶极矩和分子的极化率的各向异性相互作用产生了对齐的摆态。这些状态是由cos(2)theta电位(θ为分子轴与场矢量之间的夹角)控制的有效哈密顿量的本征函数,并作为解释和预测比对动力学的基础。结果特别表明,线性HCN在突然的和绝热的激光脉冲激发下的取向特性存在差异,在这种情况下,可以引起绝热从场频到悬垂状态的传输。 [参考:45]

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