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A versatile electrostatic trap with open optical access

机译:具有开放式光学通道的多功能静电阱

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摘要

A versatile electrostatic trap with open optical access for cold polar molecules in weak-field-seeking state is proposed in this paper. The trap is composed of a pair of disk electrodes and a hexapole. With the help of a finite element software, the spatial distribution of the electrostatic field is calculated. The results indicate that a three-dimensional closed electrostatic trap is formed. Taking ND3 molecules as an example, the dynamic process of loading and trapping is simulated. The results show that when the velocity of the molecular beam is 10 m/s and the loading time is 0.9964 ms, the maximum loading efficiency reaches 94.25% and the temperature of the trapped molecules reaches about 30.3 mK. A single well can be split into two wells, which is of significant importance to the precision measurement and interference of matter waves. This scheme, in addition, can be further miniaturized to construct one-dimensional, two-dimensional, and three-dimensional spatial electrostatic lattices.
机译:本文提出了一种具有开放光通道的通用静电阱,该弱阱在弱场寻求状态下用于冷极性分子。阱由一对圆盘电极和六极杆组成。借助有限元软件,可以计算出静电场的空间分布。结果表明形成了三维闭合静电陷阱。以ND3分子为例,模拟了其加载和俘获的动力学过程。结果表明,当分子束速度为10 m / s,加载时间为0.9964 ms时,最大加载效率达到94.25%,捕获分子的温度达到约30.3 mK。一口井可以分成两口,这对物质波的精确测量和干扰具有重要意义。另外,可以将该方案进一步小型化以构造一维,二维和三维空间静电晶格。

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