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A Linear AC Trap for Polar Molecules in Their Ground State

机译:处于基态的极性分子的线性交流阱

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摘要

A linear AC trap for polar molecules in high-field seeking states has been devised and implemented,and its characteristics have been investigated both experimentally and theoretically.The trap is loaded with slow ~(15)ND3 molecules in their ground state(para-ammonia)from a Stark decelerator.The trap's geometry offers optimal access as well as improved loading.We present measurements of the dependence of the trap's performance on the switching frequency,which exhibit a characteristic structure due to nonlinear resonance effects.The molecules are found to oscillate in the trap under the influence of the trapping forces,which were analyzed using 3D numerical simulations.On the basis of expansion measurements,molecules with a velocity and a position spread of 2.1 m/s and 0.4 mm,respectively,are still accepted by the trap.This corresponds to a temperature of 2.0 mK.From numerical simulations,we find the phase-space volume that can be confined by the trap(the acceptance)to be 50 mm~3(m/s)~3.
机译:设计并实现了一种用于高场寻找状态下极性分子的线性AC阱,并通过实验和理论研究了其特性。该阱中装有处于基态的慢〜(15)ND3分子(对氨)捕集阱的几何形状提供了最佳的通道并改善了负载。我们给出了捕集阱性能对开关频率的依赖性的测量结果,由于非线性共振效应,该测量结果显示出特征结构。发现分子发生了振荡在诱集力的影响下,利用3D数值模拟对其进行了分析。在扩展测量的基础上,分子仍被速度和位置扩展分别为2.1 m / s和0.4 mm的分子所接受。这相当于温度为2.0 mK。通过数值模拟,我们发现可以由陷阱(接受)限制的相空间体积为50 mm〜3(m / s)〜3。

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