Electric field penetration effects in time-of-flight measurements

Uk Abeywarna, T. Ariyaratne
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Abstract

The field imperfections in the mass spectrometers were studied by means of two Plasma desorption time-of-flight mass spectrometers. The experiment was performed by investigating the influence of the field leakage due to the post acceleration on the measured values of the initial axial energy of secondary ions, in the presence of the grounded grids, which are usually employed to separate the fields inside the mass spectrometers. It has been found that the changes of 0.4% in the effective lengths of the acceleration gap and the field free region respectively are possible due to the field penetration into those regions from the post acceleration gap of the mass spectrometer. The analyses also show clearly the significance of the influence of the field penetration of the post acceleration on the measured values of the initial axial energy. The initial axial energies of H*, Hj , Li, ^Li , Na + and Cs + measured under the minimum field penetration condition were found to be 4.7 eV, 4.7 eV, 0.6 eV, 0.7 eV, 0.7 eV and 1.3 eV respectively, and they had been reduced to 4.4 eV, 4.4 eV, 0.3 eV, 0.4 eV, 0.4 eV and 1.0 eV once the values were corrected separately for field penetration. These results indicate that the field penetration through a grid is a secondary effect and it is hardly unavoidable in the mass spectrometers.
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飞行时间测量中的电场穿透效应
利用两台等离子体解吸飞行时间质谱仪对质谱仪中的场缺陷进行了研究。实验是通过研究由于后加速引起的场泄漏对次级离子初始轴向能量测量值的影响来进行的,在接地网的存在下,这些接地网通常用于分离质谱仪内部的场。研究发现,质谱仪加速间隙后的场侵彻使加速间隙和场自由区有效长度分别发生0.4%的变化。分析还清楚地显示了后加速度场侵彻对初始轴向能测量值的重要影响。最小场侵穿条件下测得的H*、Hj、Li、^Li、Na +和Cs +的初始轴向能分别为4.7 eV、4.7 eV、0.6 eV、0.7 eV、0.7 eV和1.3 eV,分别进行场侵穿校正后分别降至4.4 eV、4.4 eV、0.3 eV、0.4 eV、0.4 eV和1.0 eV。这些结果表明,通过栅格的场穿透是一种次要效应,在质谱仪中几乎是不可避免的。
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