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首页> 外文期刊>European journal of mass spectrometry >Unintended parametric ejection of ions from an ion cyclotron resonance trap by two-electrode axialization
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Unintended parametric ejection of ions from an ion cyclotron resonance trap by two-electrode axialization

机译:通过两电极轴向化意外地从离子回旋共振阱捕获离子

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Azimuthal quadrupolar excitation is a commonly used technique in the field of ion cyclotron resonance mass spectrometry, in particular in combination with buffer-gas collisions to achieve axialization of the stored ions. If the quadrupolar excitation is applied with only one phase to a set of two opposing ring segments (rather than the "regular" method where two sets of electrodes are addressed with oppo_site polarities), parametric resonance effects at the frequencies 2v_z, and v_p=v_+-v~- can lead to unintended ejection of ions from the trap. These parametric resonances have been revisited both theoretically and experimentally: multipole components of different azimuthal excitation schemes are derived by a simple vector representation of the excitation signal applied to the ring segments. Thus, parametric contributions can be easily identified, as demonstrated for the two-electrode and the four-electrode quadrupolar excitation schemes as well as further examples. In addition, the effect of the single-phase two-electrode quadrupolar excitation is demonstrated for storage and axialization of cluster ions.
机译:方位四极激发是离子回旋共振质谱领域中的一种常用技术,特别是与缓冲气体碰撞结合以实现所存储离子的轴向化。如果仅以一个相位将四极激发施加到一组两个相对的环段上(而不是“常规”方法,其中以相反的极性处理两组电极),则在频率2v_z和v_p = v_下的参量共振效应+ -v〜-会导致离子从阱中意外射出。这些参量共振已在理论和实验上进行了重新讨论:不同方位激励方案的多极分量是通过施加到环段的激励信号的简单矢量表示得出的。因此,如对两电极和四电极四极激发方案以及其他示例所示,可以容易地确定参数贡献。另外,证明了单相两电极四极激发对簇离子的存储和轴向化的影响。

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