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A procedure for combining rotating-coil measurements of large-aperture accelerator magnets

机译:组合大孔径加速器磁铁的旋转线圈测量的过程

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摘要

The rotating search coil is a precise and widely used tool for measuring the magnetic field harmonics of accelerator magnets. This paper deals with combining several such multipole measurements, in order to cover magnet apertures largely exceeding the diameter of the available search coil. The method relies on the scaling laws for multipole coefficients and on the method of analytic continuation along zero-homotopic paths. By acquiring several measurements of the integrated magnetic flux density at different transverse positions within the bore of the accelerator magnet, the uncertainty on the field harmonics can be reduced at the expense of tight tolerances on the positioning. These positioning tolerances can be kept under control by mounting the rotating coil and its motor-drive unit on precision alignment stages. Therefore, the proposed technique is able to yield even more precise results for the higher-order field components than a dedicated rotating search coil of larger diameter. Moreover, the versatility of the measurement bench is enhanced by avoiding the construction of rotating search coils of different measurement radii.
机译:旋转搜索线圈是一种精确且广泛使用的工具,用于测量加速器磁体的磁场谐波。本文讨论了几种这样的多极测量方法的组合,以覆盖大大超过可用搜索线圈直径的磁体孔。该方法依赖于多极系数的缩放定律以及零零位路径上的解析连续方法。通过获取加速器磁体的孔内不同横向位置处的积分磁通量密度的多个测量值,可以降低磁场谐波的不确定性,但要以严格的定位公差为代价。通过将旋转线圈及其电动机构安装在精密对准台上,可以控制这些定位公差。因此,与较大直径的专用旋转搜索线圈相比,所提出的技术能够对高阶磁场分量产生更精确的结果。此外,避免了旋转不同测量半径的搜索线圈的结构,从而增强了测量工作台的多功能性。

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