Welton R F, Carmichael J, Desai N J, Fuga R, Goulding R H, Han B, Kang Y, Lee S W, Murray S N, Pennisi T, Potter K G, Santana M, Stockli M P
Oak Ridge National Laboratory, P.O. Box 2008, Oak Ridge, Tennessee 37830-6471, USA.
Rev Sci Instrum. 2010 Feb;81(2):02A727. doi: 10.1063/1.3301601.
The U.S. Spallation Neutron Source (SNS) is an accelerator-based, pulsed neutron-scattering facility, currently in the process of ramping up neutron production. In order to ensure that the SNS will meet its operational commitments as well as provide for future facility upgrades with high reliability, we are developing a rf-driven, H(-) ion source based on a water-cooled, ceramic aluminum nitride (AlN) plasma chamber. To date, early versions of this source have delivered up to 42 mA to the SNS front end and unanalyzed beam currents up to approximately 100 mA (60 Hz, 1 ms) to the ion source test stand. This source was operated on the SNS accelerator from February to April 2009 and produced approximately 35 mA (beam current required by the ramp up plan) with availability of approximately 97%. During this run several ion source failures identified reliability issues, which must be addressed before the source re-enters production: plasma ignition, antenna lifetime, magnet cooling, and cooling jacket integrity. This report discusses these issues, details proposed engineering solutions, and notes progress to date.
美国散裂中子源(SNS)是一个基于加速器的脉冲中子散射设施,目前正处于提高中子产量的过程中。为确保SNS能够履行其运行承诺,并以高可靠性为未来的设施升级提供条件,我们正在开发一种基于水冷陶瓷氮化铝(AlN)等离子体腔的射频驱动H⁻离子源。迄今为止,该离子源的早期版本已向SNS前端输送了高达42 mA的电流,并向离子源测试台输送了高达约100 mA(60 Hz,1 ms)的未分析束流。该离子源于2009年2月至4月在SNS加速器上运行,产生了约35 mA(按增产计划所需的束流),可用性约为97%。在此次运行期间,几次离子源故障发现了可靠性问题,在该离子源重新投入生产之前必须解决这些问题:等离子体点火、天线寿命、磁体冷却和冷却套完整性。本报告讨论了这些问题,详细介绍了提议的工程解决方案,并说明了迄今为止的进展情况。