首页> 外文学位 >A bombardment heated lanthanum-hexaboride thermionic cathode electron gun.
【24h】

A bombardment heated lanthanum-hexaboride thermionic cathode electron gun.

机译:轰击加热六硼化镧热电子阴极电子枪。

获取原文
获取原文并翻译 | 示例

摘要

This dissertation concerns the development and operation of a high current density Pierce-type electron gun with a 0.75-inch-diameter lanthanum hexaboride ({dollar}LaBsb6{dollar}) thermionic cathode. The objective of this research is to achieve as high a current density as possible from the lanthanum hexaboride cathode. The topics which are addressed are the cathode heating and control system, the Pierce-type electron gun design, and the high voltage pulsing and isolation system.; Lanthanum hexaboride is used as a cathode material in applications where high current density and resistance to chemical poisoning are important. Applications include free electron lasers and high power microwave generation.; A four stage Marx generator capable of producing 140-kV-peak pulses with a 16 {dollar}mu{dollar}s decay time constant is used to pulse the electron gun. The cathode is heated to temperatures greater than 1800{dollar}spcirc C{dollar} by electron bombardment from a tungsten filament. Both temperature-limited and space-charge-limited bombardment methods have been investigated. The temperature-limited method is open-loop unstable. Analog and digital control circuits have been developed to control this instability. A simple heating model has been developed and criteria for constructing a controllable system have been established.; An instability in the heating system which is caused by evaporation of lanthanum hexaboride from the cathode is discussed. This evaporation reduces the work function of the bombarding filament and makes the temperature-limited bombardment system uncontrollable.; The gun has been operated up to voltages of 115 kV achieving beam current densities of 30 A/{dollar}cmsp2{dollar}. The electron gun operated dependably up to voltages of 90 kV achieving temperature-limited currents of 50 A. Due to the high fields at the tip of the Pierce-focusing electrode the gun would usually arc at voltages greater than 90 kV. Electron gun operation has been observed in the temperature-limited and space-charge-limited regimes. The current density profile has been measured across the entire beam cross section.
机译:本论文涉及具有0.75英寸直径的六硼化镧(LaBsb6 {dollar})热电子阴极的高电流密度Pierce型电子枪的开发和操作。这项研究的目的是从六硼化镧阴极获得尽可能高的电流密度。讨论的主题是阴极加热和控制系统,皮尔斯式电子枪设计以及高压脉冲和隔离系统。六硼化镧在高电流密度和抗化学中毒性很重要的应用中用作阴极材料。应用包括自由电子激光器和高功率微波产生。使用能够产生140kV峰值脉冲且衰减时间常数为16μμs的四级马克思发生器为电子枪提供脉冲。通过来自钨丝的电子轰击将阴极加热到高于1800℃C的温度。已经研究了温度限制和空间电荷限制的轰击方法。限温方法是开环不稳定的。已经开发出模拟和数字控制电路来控制这种不稳定性。已经开发了一种简单的加热模型,并且已经建立了构建可控系统的标准。讨论了由于六硼化镧从阴极蒸发而引起的加热系统的不稳定性。这种蒸发降低了轰击灯丝的功函数,并使温度受限的轰击系统无法控制。喷枪的最高工作电压为115 kV,电子束电流密度为30 A / {cm2} cm2。电子枪在高达90 kV的电压下可靠地运行,从而获得50 A的温度限制电流。由于皮尔斯聚焦电极尖端的高电场,电子枪通常会在大于90 kV的电压下起弧。已经在温度限制和空间电荷限制的状态下观察到电子枪的操作。已经在整个电子束横截面上测量了电流密度曲线。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号