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A fast sextupole probe for snapback measurement in the LHC dipoles

机译:用于LHC偶极子中回弹测量的快速六极探针

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In superconducting particle accelerators a fast change of the magnetic field occurs during the first few seconds after the start of an energy ramp. Standard magnetic measurements using a coil rotating at 1 Hz do not have the time resolution required to completely resolve this phase, usually called snapback. For this reason we have developed a new and fast system dedicated to sextupole measurements. The basic component consists of three Hall plates mounted on a ring. In an ideal case this arrangement compensates the main dipole field and produces a signal proportional to the sextupole only. Mechanical tolerances and differences in the sensitivity of the Hall plates are compensated by instrumentation amplifiers and an in situ fine adjustment of the probe orientation. Using this hybrid compensation technique we have measured sextupole variations in an LHC dipole prototype during snapback at a rate of 5 Hz. In this paper we present details on the device and the results of our measurements.
机译:在超导粒子加速器中,在能量斜坡开始后的最初几秒钟内会发生磁场的快速变化。使用以1 Hz旋转的线圈进行的标准磁测量没有完全解决此相位所需的时间分辨率,通常称为骤回。因此,我们已经开发出了一种新型的快速六极测量系统。基本组件由安装在环上的三个霍尔板组成。在理想情况下,这种布置补偿了主偶极子场,并产生仅与六极子成比例的信号。机械公差和霍尔板灵敏度的差异可通过仪表放大器和探头方向的原位微调来补偿。使用这种混合补偿技术,我们已经测量了LHC偶极子原型在回跳期间以5 Hz的速率发生六极变化。在本文中,我们介绍了有关该设备的详细信息以及我们的测量结果。

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