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首页> 外文期刊>Journal of mass spectrometry: JMS >The coupling effects of hexapole and octopole fields in quadrupole ion traps: A theoretical study
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The coupling effects of hexapole and octopole fields in quadrupole ion traps: A theoretical study

机译:四极离子阱中六极和八极场的耦合效应:理论研究

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摘要

A theoretical method, the harmonic balance method, was introduced to study the coupling effects of hexapole and octopole fields on ion motion in a quadrupole ion trap. Ion motion characteristics, such as ion motion center displacement, ion secular frequency shift, nonlinear resonance curve and buffer gas damping effects, have been studied with the presence of both hexapole and octopole fields. It is found that hexapole fields have bigger impacts on ion motion center displacement, while octopole fields dominate ion secular frequency shift. Furthermore, the nonlinear features originated from hexapole and octopole fields could enhance or cancel each other, which provide us more space in a practical ion trap design process. As an example, an ion trap with improved performance was designed using a specific combination of hexapole and octopole fields. In this ion trap, a hexapole field was used to achieve efficient ion directional ejection, while an octopole field was added to correct the chemical mass shift and resolution degradation introduced by the hexapole field.
机译:介绍了一种理论方法,即谐波平衡方法,以研究六极和八极场对四极离子阱中离子运动的耦合效应。在六极场和八极场同时存在的情况下,已经研究了离子运动特性,例如离子运动中心位移,离子世俗频移,非线性共振曲线和缓冲气体阻尼效应。发现六极场对离子运动中心位移有较大影响,而八极场则占主导地位的离子长期频移。此外,源自六极场和八极场的非线性特征可以彼此增强或抵消,这为我们在实际的离子阱设计过程中提供了更多的空间。例如,使用六极场和八极场的特定组合设计了性能得到改善的离子阱。在该离子阱中,六极场用于实现有效的离子定向喷射,而八极场则用于校正六极场引入的化学质量偏移和分辨率降低。

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