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Sensitivity Enhancement of NMR Spectroscopy Receiving Chain Used in Condensed Matter Physics

机译:冷凝物理学中使用的NMR光谱接收链的敏感性增强

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摘要

Assurance of high measuring sensitivity is one of the most challenging issues for any nuclear magnetic resonance (NMR) spectroscopy system. To this end, we propose an accurate noise model of the entire probe-to-spectrometer receiving chain for condensed matter physics, based on the concept of noise figure. The model predicts the propagation of both the signal and noise levels in every component of the NMR spectroscopy receiving chain. Furthermore, it enables identification of the "weakest" component and, therefore, the optimization of the whole system. The most important property of the proposed model is the possibility to find system parameters that reduce the measurement time by an a priori calculation, rather than an a posteriori approach. The model was tested experimentally on several different samples. It was found that the measurement time can still be significantly shortened, down to at least one half of the measurement time, starting from optimized conditions with commercially available components. Thus, the proposed model can be used as a tool for both quantitative analysis of the noise properties and a sensitivity prediction of practical NMR systems in physics and material science.
机译:高测量敏感性的保证是任何核磁共振(NMR)光谱系统最具挑战性问题之一。为此,基于噪声系数的概念,我们提出了一种精确的整个探针对光谱仪接收链的精确噪声模型。该模型预测了NMR光谱接收链的每个组件中的信号和噪声水平的传播。此外,它能够识别“最弱”组件,因此,整个系统的优化。所提出的模型的最重要属性是找到通过先验计算来减少测量时间的系统参数,而不是一个后验方法。该模型在几种不同的样品上实验测试。发现测量时间仍然可以显着缩短到测量时间的至少一半,从具有市售的组件的优化条件开始。因此,所提出的模型可以用作物理和材料科学中实用NMR系统的定量分析的工具和敏感性预测。

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