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Cold cathode, high current electron source for microwave tube devices using Micro Hollow Cathode Discharge (MHCD)

机译:冷阴极,用于微波管器件的高电流电子源,使用微空心阴极放电(MHCD)

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Micro Hollow Cathode Discharge (MHCD), a technology well known as an ion source, is adapted using Argon to be a cold-cathode electron beam source for applications such as microwave tubes amplifier, which require high total current and high current density. To enable using the MHCD as the electron resource for a microwave tube devices, a focus system has been designed, incorporating an electrostatic lens with three stages ranging up to 2 kV. The lens stages incorporate differential pumping in order to reduce the pressure to the order of 10−7 Pa as needed for a microwave tube. The apertures between stages are positioned at the minimal-diameter points of the beam in order to enable maximum pressure isolation between stages. Measured data and beam-focusing simulations indicate that using a 4mm-diameter cathode, operating at 480mTorr, a current density of 10.19 A/cm2 can be obtained. Data from 8mm, 11mm and 16mm diameter MHCDs have also been measured showing an increase in current density with decreasing cathode diameter.
机译:微空心阴极放电(MHCD),一种良好称为离子源的技术,使用氩气是冷阴极电子束源,用于诸如微波管放大器的应用,这需要高总电流和高电流密度。为了使使用MHCD作为微波管器件的电子资源,设计了一种聚焦系统,包括具有三个级的静电透镜,范围高达2kV。镜头级包含差动泵送,以便根据微波管的需要将压力降低到10-7Pa的顺序。级之间的孔位于光束的最小直径点处,以便在阶段之间实现最大压力隔离。测量的数据和光束聚焦模拟表明,使用在480mTorr处工作的4mm直径的阴极,可以获得电流密度为10.19A / cm2。还测量了来自8mm,11mm和16mm直径的MHCD的数据,显示了阴极直径降低的电流密度的增加。

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