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Low field dc SQUID NMR on room temperature samples and single crystal UPt3

机译:在室温样品和单晶UPt3上的低场直流SQUID NMR

摘要

This thesis is an account of two distinct experiments with a common theme, which is the technique of dc SQUID NMR. Firstly the application of the technique for broadband spectroscopy on room temperature samples is described. The motivation behind this work was to try to obtain SQUID NMR signals from liquid samples such as water and the amino acid glycine in order to demonstrate a few of the potential applications of this technique in the low field regime. These include increased frequency resolution, the possible detection of relatively small amounts of oil contamination in water samples and low field J-spectroscopy as a chemical bond detector. Measurements were performed on samples of water and oil-water mixtures on a dipper probe that provided a simple, compact shielding arrangement that uses a two-stage SQUID sensor as the front end amplier. With the introduction of a low frequency amplier and modications to the setup the SNR was increased by a factor of 4. However, the SNR became limited by flux trapping in the superconducting materials surrounding the sample, leading to the investigation of alternative materials and methods to maintain low field homogeneity at higher polarising fields. The second part describes SQUID NMR measurements on a single crystal of the heavy fermion superconductor UPt3. Despite serious experimental and theoretical efforts, the symmetry and nature of the unconventional superconducting order parameter has not been resolved due to contradicting experiments, in particular that of the Knight shift into the superconducting state. Measurements were performed on a dilution refrigerator. A two-stage SQUID was mounted onto the fridge, a 3He marker was implemented for accurate local field determination and an overlapping superconducting shield was made to decrease the spectrometer deadtime. NMR measurements are presented for the static field parallel to the c-axis of the crystal from 600 mK down to 400 mK in a static field of 71.5 mT. The Knight shift is measured to decrease from -1.7 % in the normal state to -1.35 % at 400 mK. Together with the results from a Knight shift experiment at 30 degrees to the c-axis, it is argued that these results may provide evidence for the E2u model. Strategies for future measurements are addressed.
机译:本文是对两个具有共同主题的不同实验的解释,它们是dc SQUID NMR技术。首先描述了宽带光谱技术在室温样品上的应用。这项工作背后的动机是试图从液体样品(例如水和氨基酸甘氨酸)中获得SQUID NMR信号,以证明该技术在低场条件下的一些潜在应用。这些措施包括提高频率分辨率,可能检测到水样品中相对少量的油污染以及作为化学键检测器的低场J光谱。在浸入式探头上对水和油水混合物的样品进行了测量,该探头提供了一个简单,紧凑的屏蔽装置,该装置使用两级SQUID传感器作为前端放大器。通过引入低频放大器和药剂,SNR增大了4倍。但是,由于样品周围超导材料中的通量俘获,SNR受到限制,从而导致了对替代材料和方法的研究。在较高的偏振场下保持较低的场均匀性。第二部分描述了重费米子超导体UPt3的单晶上的SQUID NMR测量。尽管进行了大量的实验和理论上的努力,但非常规的超导有序参数的对称性和性质由于矛盾的实验而尚未得到解决,特别是奈特转变为超导状态的实验。在稀释冰箱上进行测量。将两级SQUID安装在冰箱上,使用3He标记器进行准确的局部场确定,并制作了重叠的超导屏蔽层以减少光谱仪的死区时间。给出了在71.5 mT的静态场中,与晶体c轴平行的静态场从600 mK降至400 mK的NMR测量结果。测得的奈特偏移量从正常状态下的-1.7%降低到400 mK下的-1.35%。连同奈特位移与c轴成30度的实验结果一起,认为这些结果可能为E2u模型提供证据。解决了未来测量的策略。

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    Shibahara Aya;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 eng
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