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Numerical calculations of potential distribution in non-ideal quadrupole trap and simulations of anharmonic oscillations

机译:非理想四极阱中电位分布的数值计算和非谐振荡的模拟

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A quadrupole ion trap consisting of electrode structures symmetric about e?Ԥ-axis is an important tool for conducting several precision experiments. In practice the field inside the trap does not remain purely quadrupolar, and can be calculated using numerical methods. We have used boundary element method to calculate the potential inside the truncated as well as symmetrically misaligned quadrupolar ion trap. The calculated potential values are fitted to multipole expansion and the weights of multipole moments have been evaluated by minimizing the least square deviation. The higher-order multi-pole contribution in the fabricated hyperbolic electrodes due to truncation and machining imperfections is discussed. Non-linear effects arising due to the superposition of octupole moment manifest as anharmonic oscillations of trapped ions in the non-ideal Paul trap. Theoretical simulations of non-linear effects have been carried out.
机译:由围绕e?′-轴对称的电极结构组成的四极离子阱是进行多个精密实验的重要工具。实际上,阱内部的场并不会保持纯四极,而是可以使用数值方法来计算。我们已经使用边界元方法来计算截断以及对称错位的四极离子阱内部的电势。计算出的电位值适合多极膨胀,并且通过最小化最小平方偏差来评估多极矩的权重。讨论了由于截断和加工缺陷造成的双曲线电极的高阶多极贡献。由于八极矩叠加而产生的非线性效应表现为非理想Paul阱中捕获离子的非谐振动。已经进行了非线性效应的理论模拟。

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