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Collisional dynamics in a gas of molecular super-rotors

机译:分子超转子气体中的碰撞动力学

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摘要

Recently, femtosecond laser techniques have been developed that are capable of bringing gas molecules to extremely fast rotation in a very short time, while keeping their translational motion relatively slow. Here we study collisional equilibration dynamics of this new state of molecular gases. We show that the route to equilibrium starts with a metastable ‘gyroscopic stage' in the course of which the molecules maintain their fast rotation and orientation of the angular momentum through many collisions. The inhibited rotational–translational relaxation is characterized by a persistent anisotropy in the molecular angular distribution, and is manifested in the optical birefringence and anisotropic diffusion in the gas. After a certain induction time, the ‘gyroscopic stage' is abruptly terminated by an explosive rotational–translational energy exchange, leading the gas towards the final equilibrium. We illustrate our conclusions by direct molecular dynamics simulation of several gases of linear molecules.
机译:最近,飞秒激光技术得到了发展,该技术能够在很短的时间内使气体分子以极快的速度旋转,同时保持其平移运动相对较慢。在这里,我们研究这种新的分子气体状态的碰撞平衡动力学。我们表明,达到平衡的途径始于亚稳态的“陀螺阶段”,在此过程中,分子通过多次碰撞保持了其快速旋转和角动量的方向。抑制的旋转-平移弛豫的特征在于分子角分布中的持久各向异性,并表现为气体中的光学双折射和各向异性扩散。经过一定的诱导时间后,“陀螺仪级”突然被爆炸性的旋转-平移能量交换终止,从而使气体达到最终平衡。我们通过线性分子的几种气体的直接分子动力学模拟来说明我们的结论。

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