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Field Performance of an Optimized Stack of YBCO Square “Annuli” for a Compact NMR Magnet

机译:紧凑型NMR磁体的YBCO方形“环形”优化堆栈的场性能

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The spatial field homogeneity and time stability of a trapped field generated by a stack of YBCO square plates with a center hole (square “annuli”) was investigated. By optimizing stacking of magnetized square annuli, we aim to construct a compact NMR magnet. The stacked magnet consists of 750 thin YBCO plates, each 40-mm square and 80-$mu$m thick with a 25-mm bore, and has a $varnothing$ 10 mm room-temperature access for NMR measurement. To improve spatial field homogeneity of the 750-plate stack (YP750) a three-step optimization was performed: 1) statistical selection of best plates from supply plates; 2) field homogeneity measurement of multi-plate modules; and 3) optimal assembly of the modules to maximize field homogeneity. In this paper, we present analytical and experimental results of field homogeneity and temporal stability at 77 K, performed on YP750 and those of a hybrid stack, YPB750, in which two YBCO bulk annuli, each $varnothing$46 mm and 16-mm thick with a 25-mm bore, are added to YP750, one at the top and the other at the bottom.
机译:研究了由带中心孔的YBCO方形板的堆叠(方形“环形”)产生的俘获场的空间场均匀性和时间稳定性。通过优化磁化方形环的堆叠,我们旨在构建紧凑的NMR磁体。叠层磁体由750个薄YBCO板组成,每个板均为40毫米见方,厚度为80微米,内孔为25毫米,并具有10毫米室温的通道用于NMR测量。为了提高750板叠堆(YP750)的空间场均匀性,进行了三步优化:1)从供应板中统计选择最佳板; 2)多板模块的场均匀性测量; 3)模块的最佳组装,以最大程度地提高磁场均匀性。在本文中,我们介绍了在YP750和混合堆YPB750上进行的在77 K时的场均匀性和时间稳定性的分析和实验结果,其中有两个YBCO本体环,每个环直径为46 mm,厚度为16 mm,在YP750上增加了一个25毫米的孔,一个在顶部,另一个在底部。

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