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Electrostatic Axially Harmonic Orbital Trapping: A High-Performance Technique of Mass Analysis

机译:静电轴向谐波轨道陷印:一种高性能的质量分析技术

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This work describes a new type of mass analyzer which employs trapping in an electrostatic field. The potential distribution of the field can be represented as a combination of quadrupole and logarithmic potentials. In the absence of any magnetic or rf fields, ion stability is achieved only due to ions orbiting around an axial electrode. Orbiting ions also perform harmonic oscillations along the electrode with frequency proportional to (m/z)~(-1/2). These oscillations are detected using image current detection and are transformed into mass spectra using fast FT, similarly to FT ICR. Practical aspects of the trap design are presented. High-mass resolution up to 150 000 for ions produced by laser ablation has been demonstrated, along with high-energy acceptance and wide mass range.
机译:这项工作描述了一种新型的质量分析仪,该分析仪利用静电场进行捕获。场的电势分布可以表示为四极和对数电势的组合。在没有任何磁场或rf场的情况下,仅由于离子围绕轴向电极运行而实现了离子稳定性。轨道离子还沿着电极以与(m / z)〜(-1/2)成正比的频率执行谐波振荡。使用图像电流检测来检测这些振荡,并使用类似于FT ICR的快速FT将其转换为质谱。介绍了疏水阀设计的实际情况。事实证明,激光烧蚀产生的离子具有高达150 000的高质量分辨率,并且具有高能量接受度和宽质量范围。

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