论文标题

多极RF陷阱中对称性破裂的分析方法

An analytical approach to symmetry breaking in multipole RF-traps

论文作者

Marchenay, Marylise, Pedregosa-Gutierrez, Jofre, Knoop, Martina, Houssin, Marie, Champenois, Caroline

论文摘要

射频线性多极陷阱已被证明对电极的错误位置非常敏感,这会导致对称性破裂,并导致捕获电位\ cite {pedregosa17}的额外局部最小值,从而干扰了陷阱的操作。在这项工作中,我们通过在完善的完全对称的八杆陷阱的方程式中包含较低的术语来分析逼真的八杆陷阱的RF电位。我们通过以简单的分析表达为特征的确定缺陷的组合来描述几何形状。为陷阱提出了一个完整的方程式,任何电极偏差都取决于简单情况的组合,其中缺陷被单独处理。通过比较分析结果和数值结果的缺陷大小,最多4 \%的陷阱半径的比较来验证我们的方法。如\ cite {pedregosa18}中所述,在每个电极上应用的RF电压振幅的独立微调可用于减轻逼真的陷阱的几何缺陷。以与\ cite {pedregosa18}相同的方式,基于对陷阱中离子位置的实验测量,对该补偿所需的分析方程的知识允许设计该补偿所需的RF电压集,而无需与每个电极的确切位置以及少量迭代的信息有关。通过比较数值模拟和分析结果,讨论了该协议的要求,性能和局限性。

Radio-frequency linear multipole traps have been shown to be very sensitive to mis-positioning of their electrodes, which results in a symmetry breaking and leads to extra local minima in the trapping potential \cite{pedregosa17} disturbing the operation of the trap. In this work, we analytically describe the RF-potential of a realistic octupole trap by including lower order terms to the well-established equation for a perfectly symmetric octupole trap. We describe the geometry by a combination of identified defects, characterised by simple analytical expressions. A complete equation is proposed for a trap with any electrode deviation relying on a combination of the simple cases where the defects are taken individually. Our approach is validated by comparison between analytical and numerical results for defect sizes up to 4\% of the trap radius. As described in \cite{pedregosa18}, an independent fine-tuning of the amplitude of the RF voltage applied on each electrode can be used to mitigate the geometrical defects of a realistic trap. In a different way than in \cite{pedregosa18}, the knowledge of an analytical equation for the potential allows to design the set of RF-voltages required for this compensation, based on the experimental measurement of the ion position in the trap, without information concerning the exact position of each electrode, and with a small number of iterations. The requirements, performances and limitations of this protocol are discussed via comparison of numerical simulations and analytical results.

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