Lemeshko Mikhail, Friedrich Bretislav
Fritz-Haber-Institut der Max-Planck-Gesellschaft, Faradayweg 4-6, D-14195 Berlin, Germany.
J Chem Phys. 2008 Jul 14;129(2):024301. doi: 10.1063/1.2948392.
We present an analytic model of thermal state-to-state rotationally inelastic collisions of polar molecules in electric fields. The model is based on the Fraunhofer scattering of matter waves and requires Legendre moments characterizing the "shape" of the target in the body-fixed frame as its input. The electric field orients the target in the space-fixed frame and thereby effects a striking alteration of the dynamical observables: both the phase and amplitude of the oscillations in the partial differential cross sections undergo characteristic field-dependent changes that transgress into the partial integral cross sections. As the cross sections can be evaluated for a field applied parallel or perpendicular to the relative velocity, the model also offers predictions about steric asymmetry. We exemplify the field-dependent quantum collision dynamics with the behavior of the Ne-OCS((1)Sigma) and Ar-NO((2)Pi) systems. A comparison with the close-coupling calculations available for the latter system [Chem. Phys. Lett. 313, 491 (1999)] demonstrates the model's ability to qualitatively explain the field dependence of all the scattering features observed.
我们提出了一个电场中极性分子热态到态转动非弹性碰撞的解析模型。该模型基于物质波的夫琅禾费散射,需要以体固定坐标系中表征靶“形状”的勒让德矩作为输入。电场在空间固定坐标系中使靶取向,从而显著改变动力学可观测量:部分微分截面中振荡的相位和幅度都会经历与场相关的特征变化,并延伸到部分积分截面。由于可以针对平行或垂直于相对速度施加的场来评估截面,该模型还提供了关于空间不对称性的预测。我们以Ne-OCS((1)Σ)和Ar-NO((2)π)系统的行为为例,展示了与场相关的量子碰撞动力学。与后一个系统可用的密耦计算结果[《化学物理快报》313, 491 (1999)]进行比较,证明了该模型能够定性解释所观察到的所有散射特征的场依赖性。