Kumar Rajnish, Ghodke Dharmraj V, Senecha Vinod K
Ion Source & Diagnostics Section, Proton Linac & Superconducting Cavities Division, Raja Ramanna Centre for Advanced Technology, Indore 452 013, India.
Rev Sci Instrum. 2017 Aug;88(8):083302. doi: 10.1063/1.4986340.
A cold cathode arc discharge filament based multicusp H ion source (HNIS) has been developed using an innovative low power igniter system working in a glow discharge regime to achieve a longer lifetime of the filament. This HNIS is cesium-free and its experimental prototype generates a maximum H ion beam (HNIB) current of 12 mA at 50 keV beam energy in pulse mode with a peak arc power of 27 kW using the triode extraction system. This article presents the results of initial commissioning of the HNIS and steering magnetic field used to separate out the co-extracted electrons from HNIB, verified through experiments and 3-D ion beam simulations.
一种基于冷阴极电弧放电灯丝的多尖峰H离子源(HNIS)已被开发出来,它使用了一种创新的低功率点火器系统,该系统在辉光放电模式下工作,以实现灯丝更长的使用寿命。这种HNIS不含铯,其实验原型在脉冲模式下,使用三极管提取系统,在50 keV束能量下产生的最大H离子束(HNIB)电流为12 mA,峰值电弧功率为27 kW。本文介绍了HNIS的初始调试结果以及用于从HNIB中分离出共提取电子的导向磁场,这些结果通过实验和三维离子束模拟得到了验证。