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Design of a 7.5 T superconducting quadrupole magnet for magnetic circular dichroism experiments

机译:用于磁性圆二色性实验的7.5 T超导四极磁体的设计

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This investigation presents the design of a superconducting quadrupole magnet capable of generating a 7.5 Tesla magnetic field in three directions for X-ray magnetic circular dichroism (XMCD) experiments. The quadrupole magnet has a bore diameter of 25 mm at its center and an outside diameter of 288 mm; and a 4-mm horizontal slit enables photon scattering. High permeability material-holmium pole and superconducting wire-Nb3Sn were employed to achieve high magnetic field strength in limited space. The magnetic field and structure were optimized to prevent magnet quenching. The mechanical stress under cooling to 4.2 K and magnet magnetization was also considered. During the XMCD experiments, the magnet is installed and allowed to rotate in an ultra-high vacuum chamber. The magnet is thus cryogen-free and it is cooled by a 1.5 W Gifford-McMahon cryocooler. Cryogenic considerations and analysis are also offered.
机译:这项研究提出了一种超导四极磁体的设计,该磁体能够在三个方向上产生7.5特斯拉磁场,用于X射线磁性圆二色性(XMCD)实验。四极磁体的中心直径为25 mm,外径为288 mm。 4毫米的水平狭缝可实现光子散射。采用高磁导率材料-极和超导线Nb3Sn在有限的空间内获得高磁场强度。优化磁场和结构以防止磁体淬火。还考虑了冷却至4.2 K和磁体磁化强度下的机械应力。在XMCD实验过程中,磁铁被安装并允许其在超高真空室内旋转。因此,磁体是无致冷剂的,并由1.5 W Gifford-McMahon低温冷却器进行冷却。还提供了低温方面的考虑和分析。

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