...
【24h】

Intensity limits of the PSI Injector Ⅱ cyclotron

机译:PSIⅡ型回旋加速器的强度极限

获取原文
获取原文并翻译 | 示例

摘要

AbstractWe investigate limits on the current of the PSI Injector II high intensity separate-sector isochronous cyclotron, in its present configuration and after a proposed upgrade. Accelerator Driven Subcritical Reactors, neutron and neutrino experiments, and medical isotope production all benefit from increases in current, even at the10%level: the PSI cyclotrons provide relevant experience. As space charge dominates at low beam energy, the injector is critical. Understanding space charge effects and halo formation through detailed numerical modelling gives clues on how to maximise the extracted current. Simulation of a space-charge dominated low energy high intensity (9.5 mA DC) machine, with a complex collimator set up in the central region shaping the bunch, is not trivial. We use the OPAL code, a tool for charged-particle optics calculations in large accelerator structures and beam lines, including 3D space charge. We have a precise model of the present (production) Injector II, operating at 2.2 mA current. A simple model of the proposed future (upgraded) configuration of the cyclotron is also investigated. We estimate intensity limits based on the developed models, supported by fitted scaling laws and measurements. We have been able to perform more detailed analysis of the bunch parameters and halo development than any previous study. Optimisation techniques enable better matching of the simulation set-up with Injector II parameters and measurements. We show that in the production configuration the beam current scales to the power of three with the beam size. However, at higher intensities, 4th power scaling is a better fit, setting the limit of approximately 3 mA. Currents of over 5 mA, higher than have been achieved to date, can be produced if the collimation scheme is adjusted.
机译: 摘要 我们研究了PSI Injector II高强度分离扇区同步回旋加速器在当前配置和建议升级后的电流限制。加速器驱动的亚临界反应堆,中子和中微子实验以及医学同位素生产都受益于电流的增加,即使在 10 级别:PSI回旋加速器可提供相关经验。由于空间电荷在低束能量下占主导地位,因此注入器至关重要。通过详细的数值模型了解空间电荷效应和晕圈形成,可以提供有关如何最大程度地提取电流的线索。模拟以空间电荷为主的低能量高强度(9.5 mA DC)机器,并在中心区域设置复杂的准直器以形成束,这并非易事。我们使用OPAL代码,该工具用于大型加速器结构和光束线(包括3D空间电荷)中的带电粒子光学计算。我们拥有目前(生产)喷油器II的精确模型,该喷油器以2.2 mA电流运行。还研究了回旋加速器的拟议未来(升级)配置的简单模型。我们根据已开发的模型估算强度极限,并辅以合适的缩放定律和测量。与以往的研究相比,我们已经能够对束参数和光晕发展进行更详细的分析。优化技术可以使仿真设置与Injector II参数和测量值更好地匹配。我们表明,在生产配置中,束电流与束大小成比例缩放为三的幂。但是,在较高的强度下,第四次功率缩放更适合,将极限设置为大约3 mA。如果调整准直方案,则可能产生超过5 mA的电流,这比迄今为止的电流高。

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