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Dynamics of chiral molecules in gaseous environments: validity of the Magnus effect in microscale systems

机译:气体环境中手性分子的动态:微观系统中数质效应的有效性

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Dynamics and separation of chiral C60 were numerically investigated in a gaseous environment with a linear velocity. We have found that the probability of location of center-of-mass coordinates of C60 in the Y direction was affected by chirality of C60, angular velocity of C60, temperature of gaseous environment, pressure of gaseous environment and particle species. When angular velocity was zero, the transport trajectory was close to the standard normal distribution in the Y direction. For the clockwise C60, it had a higher probability towards the positive Y -axis. However, the counterclockwise rotating C60 tended towards the negative Y -axis. In addition, we also propose a mechanical mechanism in microscale systems about chiral separation. Our statistical results present a phenomenon that is different from the Magnus effect.
机译:在具有线性速度的气态环境中进行数值研究了手性C60的动态和分离。我们发现,在Y方向上C60的质量中心坐标位置的概率受C60的手性的影响,C60的角速度,气态环境温度,气态环境的压力和颗粒物种。当角速度为零时,输送轨迹靠近Y方向的标准正态分布。对于顺时针C60,它具有朝向正y轴的概率较高。然而,逆时针旋转C60朝向负Y轴倾斜。此外,我们还提出了一种关于手性分离的微观系统中的机械机制。我们的统计结果具有与大麦效应不同的现象。

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