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Simulation of an ionization gauge with carbon nanotube cathode using SIMION 3D

机译:使用SIMION 3D模拟具有碳纳米管阴极的电离规

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The carbon nanotube (CNT) cathode ionization gauge is simulated using SIMION 8.0 software. The results show that all movement electrons emitted from the heated filament electron source are restrained inside anode ionization guage. However, to the CNT cathode ionization gauge, a few escaped electrons cannot be collected by anode. These escaped electrons influence the effective electron path length (L), along with the sensitivity. Moreover, as the ratio between anode voltage and gate voltage increases, the L first increases, and then almost keeps constant. However, the sensitivity declines with the rising anode voltage, which is primarily attributed to the decrease of ionization proficiency. In order to improve the performance of CNT cathode ionization gauge, a suppressor electrode is set, which will help to decrease the electrons energy emitted from CNT cathode, and improve the ionization probability. The simulation results will be contributed to penetrate the operation mechanism of CNT cathode ionization gauge, and provide important academic guidance to develop the new-style extreme high vacuum ionization gauge with CNT cathode.
机译:使用SIMION 8.0软件模拟碳纳米管(CNT)阴极电离规。结果表明,从加热的灯丝电子源发出的所有运动电子都被限制在阳极电离规内部。但是,对于CNT阴极电离规,阳极无法收集到一些逸出的电子。这些逸出的电子会影响有效电子路径长度(L)以及灵敏度。此外,随着阳极电压与栅极电压之比的增加,L首先增加,然后几乎保持恒定。然而,灵敏度随着阳极电压的升高而降低,这主要归因于电离能力的降低。为了提高CNT阴极电离规的性能,设置了抑制器电极,这将有助于减少从CNT阴极发出的电子能量,并提高电离几率。仿真结果将有助于渗透碳纳米管阴极电离规的运行机理,为开发新型的碳纳米管阴极超高真空电离规提供重要的学术指导。

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