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DIAGNOSTIC BEAM PULSES FOR MONITORING THE SLC LINAC

机译:用于监控SLC LINAC的诊断梁脉冲

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The Stanford Linear Collider is a pulsed machine with a repetition rate of 120 Hz. By using fast devices such as kickers and triggers, individual pulses can be modified, measured and diagnosed, and then dumped to avoid any background in the experiment. For more than five years, a diagnostic pulse has been used to kick the beams onto off-axis screens at the end of the linac every 6 seconds. This provides a visual monitor of the beam size and loses about 0.14 % of the rate or two minutes a day. The sensitivity of the linac optics to temperature and phase variations makes it desirable to monitor the phase advance between different locations in order to make local corrections. In principle, the feedback systems can measure the phase advance using the natural jitter of the beam. In practice, the phase jitter of the beam with respect to the rf may dominate the betatron jitter and distort the measurement. By using a large induced betatron oscillation, the two effects can be separated. To improve the monitoring of phase advance, a small kicker at the beginning of the linac is fired every few seconds and the orbit of this particular beam pulse measured and analyzed. The sensitivity, the measured variation and the correction scheme will be discussed.
机译:斯坦福线性撞机是一种脉冲机,重复率为120 Hz。通过使用诸如脊椎和触发的快速装置,可以修改,测量和诊断,然后倾倒以避免实验中的任何背景。超过五年,已使用诊断脉冲每6秒钟在LinAc末端敲入轴外屏幕上。这提供了光束尺寸的视觉监视器,并且每天损失约0.14%或两分钟。 LINAC光学器件对温度和相位变化的灵敏度使得希望监视不同位置之间的相位进步以使局部校正。原则上,反馈系统可以使用光束的自然抖动测量相位前进。实际上,相对于RF的光束的相位抖动可以占据β抖动并扭曲测量。通过使用大的诱导的Betatron振荡,可以分离两种效果。为了改善对阶段进步的监测,LinaC开始时的小踢球者每隔几秒钟和测量并分析该特定光束脉冲的轨道。将讨论灵敏度,测量的变化和校正方案。

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