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Dipolar and quadrupolar detection using an FT-ICR MS setup at the MPIK Heidelberg

机译:使用MPIK Heidelberg的FT-ICR MS设置进行双极和四极检测

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Dipolar and single-phase two-electrode quadrupolar detection schemes have been investigated at a Fourier transform ion cyclotron resonance mass spectrometry (FT-ICR MS) setup built for the KATRIN experiment at the Max-Planck-Institute for Nuclear Physics (MPIK) in Heidelberg. We present first experimental results of 7Li + signals from a cylindrical Penning trap configuration for both detection schemes. While the prominent signal of the conventional dipolar detection scheme marks the reduced cyclotron frequency, the main signal for the quadrupolar detection appears at the sum of the reduced cyclotron frequency and the magnetron frequency. For ideal trapping fields, this sum frequency equals the ion cyclotron frequency ν c = qB/(2πm). Sidebands due to the combined motions of the cyclotron mode and magnetron mode are observed by quadrupolar detection which allows the determination of the respective combinations of eigenfrequencies.
机译:在海德堡马克斯-普朗克核物理研究所(MPIK)为KATRIN实验建立的傅立叶变换离子回旋共振质谱(FT-ICR MS)装置上,研究了双极和单相两电极四极检测方案。 。我们给出了两种检测方案的圆柱形Penning陷阱配置的 7 Li + 信号的第一实验结果。常规偶极检测方案的突出信号标记了回旋加速器频率降低的同时,四极检测的主信号出现在回旋加速器频率降低和磁控管频率之和上。对于理想的俘获场,该和频率等于离子回旋加速器频率ν c = qB /(2πm)。通过四极检测可以观察到由于回旋加速器模式和磁控管模式的组合运动而产生的边带,这可以确定本征频率的各个组合。

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