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Vibrating wire apparatus for periodic magnetic structure measurement

机译:用于周期性磁结构测量的振弦装置

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摘要

Devices with periodic magnetic structures such as wigglers and undulators are often key elements in synchrotron radiation sources. In applications where the coherence of the emitted radiation is important, magnetic field errors distorting the periodicity of the field can significantly reduce the performance of the devices. Thus, the measurement, localization, and correction of the field errors can be a critical issue. This article presents a new method for magnetic field measurements in periodic magnetic structures. The method uses a vibrating taut wire passing through the magnetic structure, and it involves measurements of the amplitudes and phases of the standing waves excited on the wire by the Lorentz force between an AC current in the wire and the surrounding magnetic field. For certain arrangements of the wire, vibrations in the wire will be excited by only non-periodic magnetic field component, i.e., by the error field. By measuring the phase and amplitude of these waves, one can reconstruct the error field distribution and then correct it. The method was tested on a permanent magnet wiggler with 19.8 cm period and a peak field of ~ 7000G. It demonstrated ~ 0.6G RMS sensitivity, δB_(rms)/B_(rms) ~ 1.2 x 10~(-4) and spatial resolution sufficient to identify poles generating the field error. Good agreement was found between field error measurements obtained with the vibrating wire method and with traditional Hall probe field mapping.
机译:具有周期磁结构的设备(例如摆动器和波动器)通常是同步辐射源中的关键元件。在发射辐射的相干性很重要的应用中,扭曲场周期的磁场误差会显着降低设备的性能。因此,场误差的测量,定位和校正可能是一个关键问题。本文提出了一种用于周期性磁结构中磁场测量的新方法。该方法使用了穿过金属结构的拉紧的振弦,它涉及测量导线中的交流电流和周围磁场之间的洛伦兹力在导线上激发的驻波的振幅和相位。对于导线的某些布置,导线中的振动将仅由非周期性磁场分量,即由误差场激发。通过测量这些波的相位和幅度,可以重建误差场分布,然后对其进行校正。该方法在周期为19.8厘米,峰值场为7000G的永磁摆动器上进行了测试。它显示出〜0.6G RMS灵敏度,δB_(rms)/ B_(rms)〜1.2 x 10〜(-4)和空间分辨率,足以识别产生场误差的极点。在用振弦法获得的场误差测量值与传统的霍尔探头场测图之间发现了很好的一致性。

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