首页> 外文会议>International Symposium on Discharges and Electrical Insulation in Vacuum >Investigation of discharge characteristics and optimized insulator of a miniature penning ion source
【24h】

Investigation of discharge characteristics and optimized insulator of a miniature penning ion source

机译:微型铅离子源放电特性及优化绝缘体研究

获取原文

摘要

In the paper, the influence of covered gas and oxidization of molybdenum electrode surface on the field emission current at the initiation of high voltage vacuum breakdown is presented. Since enhanced field emission (EFE) is often observed there, we have investigated the influence of covered gas and oxides on the EFE of Mo by means of a field emission vacuum system (FEVS) and the field emission current was measured. The Mo samples were prepared and the experimental platforms were built up. The measured results show that the oxidation of Mo electrode surface will lead to the increase of field emission current and the covered gas from Mo electrode surface will induce the decrease of field emission current. At the same time, the experiments also have been completed under the different pressure of helium gas. Comparison with the emission current of 10-6 Pa vacuum pressure, the results indicate the current will raise when gas pressure is 10-3 Pa, while the current will keep invariability at 10-2 Pa and 10-4 Pa pressure. The experimental results are significant to evaluate the influence of oxidization, covered gas and rarified gas atmosphere on the vacuum breakdown voltage of electrode gaps which have been stored for a long time.
机译:在论文中,被覆盖的气体和在上高压真空击穿的开始的场致发射电流的钼电极表面的氧化的影响被呈现。由于增强的场发射(EFE)经常观察到那里,我们通过场发射的真空系统(FEVS)和场致发射电流的方法研究覆盖气体和Mo的氧化物EFE的影​​响进行测定。制备莫样品和实验平台是建立起来了。所测得的结果表明,钼电极表面的氧化会导致场致发射电流的增加和选自Mo电极表面被覆盖的气体将引起场致发射电流的降低。同时,实验也已经氦气的不同压力下完成的。与10-6帕的真空压力的发射电流比较,结果表明,当气体压力为10-3帕的电流将提高,而电流将保持不变,在10-2 Pa和10-4帕的压力。实验结果是显著以评估氧化的在其上已经存储了很长的时间电极的间隙的真空击穿电压的影响,覆盖气体和稀薄气体气氛。

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