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A HTS dc SQUID-NMR: Fabrication of the SQUID and application to low-field NMR for fruit quality detection

机译:HTS dc SQUID-NMR:SQUID的制造及其在低场NMR中用于水果质量检测的应用

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Superconducting Quantum Interference Devices (SQUIDs) have made the detection of low-field (LF) and ultra-low field nuclear magnetic resonance (ULF-NMR) a reality. The latter has been proven to be a potential tool for non-destructive quality testing of horticultural products, amongst many other applications. High-Temperature Superconductor (HTS) dc SQUIDS are likely to allow for the development of not only low-cost NMR systems but also prototypes that are mobile and easily maintainable. A HTS dc SQUID was manufactured on an YBCO thin film, using a novel laser based lithography method. The lithography was implemented by a new laser system developed in-house, as a model of low-cost lithography systems. The junctions of the dc SQUID were tested and displayed normal Ⅰ-Ⅴ characteristics in the acceptable range for the application. In order to determine the viability of low-field NMR for non-destructive quality measurement of horticultural products, a commercial HTS dc SQUID-NMR system was used to measure quality parameters of banana during ripening. The trend of color change and sugar increase of the banana during ripening were the most highly correlated attributes to the SQUID-NMR measured parameter, average T_1 (spin-lattice relaxation time). Further studies were done, that involved processing of the NMR signal into relaxation time resolved spectra. A spectral signature of banana was obtained, where each peak is a T_1 value corresponding to a proton pool, and is reported here. These results will potentially lead to deeper understanding of the quality of the samples under study.
机译:超导量子干扰设备(SQUID)已经使低场(LF)和超低场核磁共振(ULF-NMR)的检测成为现实。在许多其他应用中,后者已被证明是用于园艺产品无损质量测试的潜在工具。高温超导体(HTS)直流SQUIDS不仅可以开发低成本的NMR系统,还可以开发可移动且易于维护的原型。使用新颖的基于激光的光刻方法,在YBCO薄膜上制造了HTS dc SQUID。光刻是通过内部开发的新型激光系统实现的,该系统是低成本光刻系统的模型。测试了直流SQUID的结,并在可接受的应用范围内显示出正常的Ⅰ-Ⅴ特性。为了确定低场NMR在园艺产品非破坏性质量测量中的可行性,使用了商用HTS dc SQUID-NMR系统来测量成熟过程中香蕉的质量参数。香蕉成熟过程中颜色变化和糖增加的趋势是与SQUID-NMR测量参数平均T_1(自旋晶格弛豫时间)高度相关的属性。进行了进一步的研究,涉及将NMR信号处理为弛豫时间分辨谱。获得了香蕉的光谱特征,其中每个峰是对应于质子池的T_1值,并在此处报告。这些结果可能会导致对所研究样品质量的更深入了解。

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