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首页> 外文期刊>The Journal of Chemical Physics >Lorentz-like force emerging from kinematic interactions between electrons and nuclei in molecules: A quantum mechanical origin of symmetry breaking that can trigger molecular chirality
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Lorentz-like force emerging from kinematic interactions between electrons and nuclei in molecules: A quantum mechanical origin of symmetry breaking that can trigger molecular chirality

机译:Lorentz样力从分子中的电子和核之间的运动相互作用出来:量子机械突破可以引发分子手性的

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The Longuet-Higgins (Berry) phase arising from nonadiabatic dynamics and the Aharonov-Bohm phase associated with the dynamics of a charged particle in the electromagnetic vector potential are well known to be individually a manifestation of a class of the so-called geometrical phase. We herein discuss another similarity between the force working on a charged particle moving in a magnetic field, the Lorentz force, and a force working on nuclei while passing across a region where they have a strong quantum mechanical kinematic (nonadiabatic) coupling with electrons in a molecule. This kinematic force is indeed akin to the Lorentz force in that its magnitude is proportional to the velocity of the relevant nuclei and works in the direction perpendicular to its translational motion. Therefore this Lorentz-like nonadiabatic force is realized only in space of more or equal to three dimensions, thereby highlighting a truly multi-dimensional effect of nonadiabatic interaction. We investigate its physical significance qualitatively in the context of breaking of molecular spatial symmetry, which is not seen otherwise without this force. This particular symmetry breaking is demonstrated in application to a coplanar collision between a planar molecule and an atom sharing the same plane. We show that the atom is guided by this force to the direction out from the plane, resulting in a configuration that distinguishes one side of the mirror plane from the other. This can serve as a trigger for the dynamics towards molecular chirality. (C) 2017 Author(s). All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license.
机译:从非绝热动力学并与在电磁向量电势的带电粒子的动力学相关的阿哈罗诺夫博姆相引起的龙格 - 希金斯(浆果)相是公知的是单独的一类所谓的几何相位的的一种表现。本文我们讨论的带电粒子在磁场中,洛伦兹力移动工作的力之间的另一相似性,并且力上晶核工作时横穿其中它们有很强的量子力学的运动(非绝热的区域)与一个电子的耦合分子。这个运动力确实是类似于在它的大小正比于在方向相关的细胞核和作品的垂直于其平移运动速度的洛伦兹力。因此,该洛伦兹状绝热的力仅在多于或等于三维空间实现,从而突出非绝热相互作用的真正的多立体效果。我们在分子空间对称性,这是不以其他方式看到没有这个力量打破的背景下定性研究其物理意义。这种特殊的对称性破坏是体现在应用到平面分子和原子共享相同的平面之间的共面碰撞。我们表明,原子被该力从平面引导到方向跑,导致在配置区分从另一个镜像平面的一侧。这可以作为对分子手性的动态触发。 (c)2017年作者。除非另有说明,否则所有文章内容都在创造性的公共归因(CC)许可下许可。

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