Literature DB >> 22081753

Field Performance of an Optimized Stack of YBCO Square "Annuli" for a Compact NMR Magnet.

Seungyong Hahn1, John Voccio, Stéphane Bermond, Dong-Keun Park, Juan Bascuñán, Seok-Beom Kim, Tomita Masaru, Yukikazu Iwasa.   

Abstract

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- μm thick with a 25-mm bore, and has a Ø10 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 Ø46 mm and 16-mm thick with a 25-mm bore, are added to YP750, one at the top and the other at the bottom.

Entities:  

Year:  2011        PMID: 22081753      PMCID: PMC3212047          DOI: 10.1109/TASC.2010.2103920

Source DB:  PubMed          Journal:  IEEE Trans Appl Supercond


  1 in total

1.  Trapped Field Characteristics of Stacked YBCO Thin Plates for Compact NMR Magnets: Spatial Field Distribution and Temporal Stability.

Authors:  Seungyong Hahn; Seok Beom Kim; Min Cheol Ahn; John Voccio; Juan Bascuñán; Yukikazu Iwasa
Journal:  IEEE Trans Appl Supercond       Date:  2010-06-01
  1 in total
  1 in total

1.  Construction and test result of an all-REBCO conduction-cooled 23.5 T magnet prototype towards a benchtop 1 GHz NMR spectroscopy.

Authors:  Wooseung Lee; Dongkeun Park; Juan Bascuñán; Yukikazu Iwasa
Journal:  Supercond Sci Technol       Date:  2022-08-31       Impact factor: 3.482

  1 in total

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