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四极杆离子阱中空间电荷诱导的非线性效应

Space charge induced nonlinear effects in quadrupole ion traps.

作者信息

Guo Dan, Wang Yuzhuo, Xiong Xingchuang, Zhang Hua, Zhang Xiaohua, Yuan Tao, Fang Xiang, Xu Wei

机构信息

Department of Biomedical Engineering, Beijing Institute of Technology, Beijing, China.

出版信息

J Am Soc Mass Spectrom. 2014 Mar;25(3):498-508. doi: 10.1007/s13361-013-0784-9. Epub 2014 Jan 3.

Abstract

A theoretical method was proposed in this work to study space charge effects in quadrupole ion traps, including ion trapping, ion motion frequency shift, and nonlinear effects on ion trajectories. The spatial distributions of ion clouds within quadrupole ion traps were first modeled for both 3D and linear ion traps. It is found that the electric field generated by space charge can be expressed as a summation of even-order fields, such as quadrupole field, octopole field, etc. Ion trajectories were then solved using the harmonic balance method. Similar to high-order field effects, space charge will result in an "ocean wave" shape nonlinear resonance curve for an ion under a dipolar excitation. However, the nonlinear resonance curve will be totally shifted to lower frequencies and bend towards ion secular frequency as ion motion amplitude increases, which is just the opposite effect of any even-order field. Based on theoretical derivations, methods to reduce space charge effects were proposed.

摘要

本工作提出了一种理论方法来研究四极离子阱中的空间电荷效应,包括离子捕获、离子运动频率偏移以及对离子轨迹的非线性效应。首先针对三维和线性离子阱对四极离子阱内离子云的空间分布进行了建模。研究发现,空间电荷产生的电场可表示为偶极场的叠加,如四极场、八极场等。然后使用谐波平衡法求解离子轨迹。与高阶场效应类似,空间电荷会使离子在偶极激发下产生“海浪”形非线性共振曲线。然而,随着离子运动幅度增加,非线性共振曲线会完全向低频方向移动并向离子久期频率弯曲,这与任何偶极场的效应正好相反。基于理论推导,提出了减少空间电荷效应的方法。

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