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Development of a 700 MHz low-/high- temperature superconductor nuclear magnetic resonance magnet: Test results and spatial homogeneity improvement

机译:700 MHz低温/高温超导体核磁共振磁体的开发:测试结果和空间均匀性的提高

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摘要

For the first time in nuclear magnetic resonance (NMR) magnet development, a magnet configuration comprising an insert wound with high-temperature superconductor (HTS) and a background-field magnet wound with low-temperature superconductor (LTS) has been proven viable for NMR magnets. This new LTS/HTS magnet configuration opens the way for development of 1 GHz and above NMR magnets. Specifically, a 700 MHz LTS/HTS NMR magnet (LH700), consisting of a 600 MHz LTS magnet (L600) and a 100 MHz HTS insert (H100), has been designed, built, and successfully tested, and its magnetic field characteristics were measured and analyzed. A field homogeneity of 172 ppm in a cylindrical mapping volume of 17 mm diameter by 30 mm long was measured at 692 MHz and corresponding 1H NMR signal with 1.9 kHz half-width was captured. Two techniques, room-temperature and ferromagnetic shimming, were analytically examined to investigate if they would be effective for further improving spatial field homogeneity of the LH700.
机译:在核磁共振(NMR)磁体开发中,磁结构首次被证明是可行的,该磁体结构包括缠绕有高温超导体(HTS)的插入件和缠绕有低温超导体(LTS)的背景场磁体磁铁。这种新的LTS / HTS磁体配置为1 GHz及以上NMR磁体的开发开辟了道路。具体而言,设计,制造并成功测试了由600 MHz LTS磁体(L600)和100 MHz HTS插入件(H100)组成的700 MHz LTS / HTS NMR磁体(LH700),并对其磁场特性进行了测试。测量和分析。在692 MHz的直径为17 mm的直径,30 mm长的圆柱状映射体积中,场均值为172 ppm,并捕获了相应的半宽为1.9 kHz的 1 H NMR信号。分析了两种技术,即室温和铁磁匀场,以研究它们是否对进一步改善LH700的空间场均匀性有效。

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