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Principles for timing at spallation neutron sources based on developments at LANSCE

机译:基于LANSCE的发展,对散裂中子源进行定时的原理

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Due to AC-power-grid frequency fluctuations, the designers for accelerator-based spallation-neutron facilities have worked to optimize the conflicting demands of accelerator and neutron chopper performance. For the first time, we are able to quantitatively access the tradeoffs between these two constraints and design or upgrade a facility to optimize total system performance using powerful new simulation techniques. We have modeled timing systems that integrate chopper controllers and chopper hardware and built new systems. Thus, at LANSCE, we now operate multiple chopper systems and the accelerator as simple slaves to a single master-timing-reference generator. Based on this experience we recommend that spallation neutron sources adhere to three principles. First, timing for pulsed sources should be planned starting with extraction at a fixed phase and working backwards toward the leading edge of the beam pulse. Second, accelerator triggers and storage ring extraction commands from neutron choppers offer only marginal benefits to accelerator-based spallation sources. Third, the storage-ring RF should be phase synchronized with neutron choppers to provide extraction without the one orbit timing uncertainty.
机译:由于交流电网频率的波动,基于加速器的散裂中子设施的设计人员已努力优化加速器和中子斩波器性能的相互矛盾的需求。我们首次能够定量地权衡这两个约束之间的折衷,并使用强大的新仿真技术来设计或升级设施以优化总体系统性能。我们对集成了斩波器控制器和斩波器硬件的计时系统进行了建模,并构建了新系统。因此,在LANSCE,我们现在将多个斩波器系统和加速器作为单个主定时参考发生器的简单从机进行操作。基于此经验,我们建议散裂中子源遵循三个原则。首先,应计划脉冲源的定时,从固定相位的提取开始,并朝着波束脉冲的前沿向后工作。其次,来自中子斩波器的加速器触发器和存储环提取命令仅对基于加速器的散裂源提供了微不足道的好处。第三,存储环射频应与中子斩波器相位同步,以在没有一个轨道定时不确定性的情况下进行提取。

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