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Superconducting magnet for a cyclotron Rutherford backscattering spectrometry system

机译:回旋加速器卢瑟福背散射光谱系统的超导磁体

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We have developed a superconducting magnet for a high-speed and high-resolution Rutherford backscattering spectrometry system that utilizes the ion motion along the cyclotron trajectory in a magnetic field. The superconducting magnet without cryogen consists of a main coil, shim coils, a 4 K refrigerator and pole pieces. It generates a 2 T magnetic field in the spectrometer of φ 340 x 750 mm. The shapes of the pole pieces and the coil arrangements are optimized by a magnetic field analysis to generate a uniform field. The magnetic field distribution is made to be so uniform that the scattered ions can pass through a φ 1 mm aperture, by ion trajectory calculation. The trajectory of the incident beam is also computed, and the position of a specimen holder is determined so that the incident beam is well focused on the specimen.
机译:我们已经开发了一种用于高速和高分辨率卢瑟福背散射光谱系统的超导磁体,该系统利用了离子在磁场中沿着回旋加速器的运动。没有制冷剂的超导磁体由主线圈,匀场线圈,4 K制冷机和极靴组成。它会在光谱仪中产生一个φ340 x 750 mm的2 T磁场。通过磁场分析来优化极靴和线圈装置的形状,以产生均匀的磁场。通过离子轨迹计算,使磁场分布均匀,以使散射的离子可以通过φ1 mm的孔。还可以计算入射光束的轨迹,并确定样本支架的位置,以便将入射光束很好地聚焦在样本上。

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