Author:
Xie Y.H.,Wei J.L.,Gu Y.M.,Xu Y.J.,Liang L.Z.,Cui Q.L.,liu W.,Pan J.J.,Yang Y.W.,Xie J.W.,Zhao Y.Z.,Jiang C.C.,Liu S.,Xie Y.L.,Hu C.D.
Abstract
Abstract
The Comprehensive Research Facility for Fusion Technology (CRAFT) is a large scientific
facility that is preferentially deployed for the construction of major national science and
technology infrastructures. A negative beam source based neutral beam injector (NNBI) with beam
energy of 200–400 keV, beam power of 2 MW and beam duration of 100 s is one of the devices. A
giant radio frequency (RF) based negative beam source was designed for the CRAFT NNBI system. In
order to understand the physics and pre-study the engineering problems for RF negative beams
source, several beam sources with different scales will be designed and tested. According to the
R&D schedule, a negative beam source with a single driver was designed, developed and tested
first. The single driver beam source is a quarter of the size of the full size negative beam
source. It contains an RF driver, an expansion chamber and a negative ion accelerator with three
electrodes, which are a plasma grid (PG), extraction grid (EG) and ground grid (GG). To enhance
the negative ion production, Cesium is injected into the plasma chamber and a magnetic filter
filed is produced by current flow through the PG to decrease the electron temperature. The
negative beam source was tested on the test facility after assembly, including RF plasma
generation, negative ion production, extraction and acceleration. The characteristic of plasma
discharge, beam extraction and acceleration was studied without and with Cs injection. The long
pulse of 105 seconds negative ion beam was achieved successfully. The extracted negative ion
current is 4 A and the ratio of electron and negative ion is around 0.8. It lays a good foundation
for the R&D of negative ion source with a multi-driver for the CRAFT NNBI system. The details of
the design and experimental results of beam source was shown in this paper.
Subject
Mathematical Physics,Instrumentation
Cited by
4 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献