首页> 外文会议> >Radiation modification of carbon surface as a means of multi-tips field emission cathode production for different purposes
【24h】

Radiation modification of carbon surface as a means of multi-tips field emission cathode production for different purposes

机译:碳表面的辐射改性,作为用于不同目的的多尖端场发射阴极生产的一种手段

获取原文
获取外文期刊封面目录资料

摘要

The report contains the results of research of carbon materials surface microrelief (piro-graphite PG-1 and highly strong reactor graphite MGP-6) with the help of air scanning tunneling microscope. The experimental carbon materials were irradiated by heavy ions of middle and high energies. The purpose of the experiments was to find out possibilities of utilization of radiation technologies for production effective multi-tips flat cathodes on the basis of field electron emission. It is known the need in such cathodes is quite big in vacuum microelectronics, for example. In flat matrix display screens production, highly efficient light sources production, etc. In the process of experiments different radiation parameters were used: the type of bombarding ions, flow density and radiation fluence, irradiated carbon temperature and angle of arrival of the ion beam on its surface. The results analysis showed that the final geometry of the surface of irradiated carbon materials is determined by reciprocal intensity of three processes: crystal structure defects formation, surface atoms spraying and growth of new surface formations. The latter can be result both of radiation stimulated surface diffusion and deposit or material from radiation created plasma component near the carbon surface. The results of this research work prove to a big extent the effectiveness of the use of radiation modifications of carbon materials and production of developed multi-tips cathodes on the basis of field electron emission. The report presents the measured emission properties of the field emission cathode, their utilization parameters stability and life-time at different current levels.
机译:该报告包含了借助空气扫描隧道显微镜对碳材料表面微浮雕(球墨铸铁PG-1和高强度反应堆石墨MGP-6)的研究结果。实验碳材料被中高能的重离子辐照。实验的目的是在场电子发射的基础上,发现利用辐射技术生产有效的多尖端扁平阴极的可能性。例如,已知在真空微电子领域中对这种阴极的需求非常大。在平面矩阵显示屏的生产,高效光源的生产等方面。在实验过程中,使用了不同的辐射参数:轰击离子的类型,流量密度和辐射通量,辐照的碳温度和离子束在玻璃上的到达角度它的表面。结果分析表明,受辐照的碳材料表面的最终几何形状是由三个过程的倒数决定的:晶体结构缺陷的形成,表面原子的喷涂以及新表面的生长。后者既可以是辐射激发的表面扩散和沉积的结果,也可以是碳表面附近的辐射产生的等离子体成分产生的材料或沉积物的结果。这项研究工作的结果在很大程度上证明了使用碳材料进行辐射改性以及在场电子发射的基础上生产发达的多尖端阴极的有效性。该报告介绍了在不同电流水平下测得的场发射阴极的发射特性,其利用率参数的稳定性和寿命。

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