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A spatial electrostatic beam splitter for polar molecules in weak-field-seeking states

机译:寻线弱场状态下极性分子的空间静电分束器

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摘要

A spatial electrostatic beam splitter composed of six charged poles for polar molecules in weak-field-seeking states is proposed. First, the schematic diagram is given. With the help of finite element software the spatial distribution of the electrical field is calculated. The dynamic process of the loading and splitting polar molecules is simulated using the classical Monte Carlo method. The influences of the longitudinal velocity of the incident molecular beam and the voltages on the loading efficiency are studied. Two output arms of the beam splitter can be cut off at a certain position to adjust the splitting ratio of the molecular beam. Then the influences of the voltages and cutting positions on the splitting ratio are investigated. The results indicate that the splitting ratio can be manipulated conveniently from 0% to 100%.
机译:提出了一种空间静电分束器,由弱场状态下的极性分子组成的空间静电分束器。 首先,给出示意图。 借助有限元件,计算电场的空间分布。 使用经典的蒙特卡罗方法模拟装载和分裂极性分子的动态过程。 研究了入射分子梁的纵向速度和对负载效率的电压的影响。 分束器的两个输出臂可以在一定位置切断以调节分子束的分离比。 然后研究了电压和切割位置对分裂比的影响。 结果表明,可以方便地操纵分裂比至100%。

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