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方形参数激励:一种用于四极杆离子阱的数字共振方法。

Square Parametric Excitation: A Digital Resonant Method for the Quadrupole Ion Trap.

作者信息

Capek Grace O, Howdieshell Casey J, Garand Etienne

机构信息

Department of Chemistry, University of Wisconsin─Madison, 1101 University Ave, Madison, Wisconsin 53706, United States.

出版信息

J Am Soc Mass Spectrom. 2024 Aug 7;35(8):1846-1853. doi: 10.1021/jasms.4c00169. Epub 2024 Jul 16.

DOI:10.1021/jasms.4c00169
PMID:39012076
Abstract

Digital ion trap technology is an alternate method for driving quadrupole ion traps and mass filters using variable frequency, fixed amplitude RF square waves in place of variable amplitude, fixed frequency RF sine waves. This technique offers some advantages such as an increase in the high mass analysis range by varying frequency and lower overall voltage requirements. Here, we present a complex square waveform developed for resonant parametric excitation in a quadrupole linear ion trap. Unlike traditional resonance methods, the driving RF square wave and auxiliary square wave are coupled using the same digital circuitry without the need for transformer coupling. In this work, we use this complex waveform to selectively excite the first order parametric resonances of ion motion. The square parametric excitation method presented here employs a simple and repetitive circuit design consisting of a low-voltage waveform generator followed by a series of high-voltage MOSFET switches. This design allows for resonance methods to be easily implemented in the all-digital quadrupole. The complex square waveform can perform the same useful functions as sine wave auxiliary signals, such as selective mass elimination and mass isolation. We also demonstrate that the mass resolution performance and S/N of our digital mass spectrometer is improved by applying the complex square waveform during ion ejection.

摘要

数字离子阱技术是一种替代方法,用于驱动四极杆离子阱和质量过滤器,它使用可变频率、固定幅度的射频方波来代替可变幅度、固定频率的射频正弦波。该技术具有一些优点,例如通过改变频率增加高质量分析范围以及降低总体电压要求。在此,我们展示了一种为四极杆线性离子阱中的共振参数激发而开发的复杂方波。与传统共振方法不同,驱动射频方波和辅助方波使用相同的数字电路进行耦合,无需变压器耦合。在这项工作中,我们使用这种复杂波形来选择性地激发离子运动的一阶参数共振。这里提出的方波参数激发方法采用了一种简单且重复的电路设计,由一个低压波形发生器和一系列高压MOSFET开关组成。这种设计使得共振方法能够在全数字四极杆中轻松实现。复杂方波可以执行与正弦波辅助信号相同的有用功能,例如选择性质量消除和质量隔离。我们还证明,在离子喷射期间应用复杂方波可提高我们数字质谱仪的质量分辨率性能和信噪比。

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