Paper
23 June 2014 A HTS dc SQUID-NMR: fabrication of the SQUID and application to low-field NMR for fruit quality detection
J. Frédéric Isingizwe Nturambirwe, Willem J. Perold, Linus U. Opara
Author Affiliations +
Proceedings Volume 9257, Sensors, MEMS and Electro-Optical Systems; 92570G (2014) https://doi.org/10.1117/12.2064968
Event: Third Conference on Sensors, MEMS and Electro-Optic Systems, 2014, Skukuza, Kruger National Park, South Africa
Abstract
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 T1 (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 T1 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.
© (2014) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
J. Frédéric Isingizwe Nturambirwe, Willem J. Perold, and Linus U. Opara "A HTS dc SQUID-NMR: fabrication of the SQUID and application to low-field NMR for fruit quality detection", Proc. SPIE 9257, Sensors, MEMS and Electro-Optical Systems, 92570G (23 June 2014); https://doi.org/10.1117/12.2064968
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KEYWORDS
Lithography

Laser development

Bridges

Laser systems engineering

Superconductors

Thin films

Photoresist materials

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