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Cryogen—Free Setup for Local and Integral Magnetic Field Measurements of Superconducting Undulator Coils

机译:用于超导波荡器线圈的局部和整体磁场测量的无Crogen装置

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摘要

Since in an undulator the photons add up coherently over the whole undulator length even small magnetic field errors can disturb the superposition of photons and reduce the intensity of the generated photon beam. Therefore, as in any other undulator, the magnetic field has to be measured with high accuracy. Precise measurements of the magnetic properties of conventional, i.e., permanent magnet based insertion devices (IDs) has undergone huge improvements over the past years and initiated a new era in synchrotron light sources worldwide. A similar breakthrough is now necessary in the field of superconducting insertion devices. Therefore, a part of our R&D program for superconducting insertion devices is to perform quality assessment of their magnetic field properties.
机译:由于在波荡器中,光子在整个波荡器长度上会相干地相加,因此即使很小的磁场误差也会干扰光子的叠加并降低生成的光子束的强度。因此,如同在任何其他波荡器中一样,必须高精度地测量磁场。常规的,即基于永磁体的插入设备(ID)的磁性能的精确测量在过去几年中经历了巨大的改进,并开创了全球同步加速器光源的新时代。在超导插入装置领域中,现在有必要取得类似的突破。因此,我们的超导插入设备研发计划的一部分是对它们的磁场特性进行质量评估。

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