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Overhauser Geomagnetic Sensor Based on the Dynamic Nuclear Polarization Effect for Magnetic Prospecting

机译:基于动态核极化效应的Overhauser地磁传感器

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摘要

Based on the dynamic nuclear polarization (DNP) effect, an alternative design of an Overhauser geomagnetic sensor is presented that enhances the proton polarization and increases the amplitude of the free induction decay (FID) signal. The short-pulse method is adopted to rotate the enhanced proton magnetization into the plane of precession to create an FID signal. To reduce the negative effect of the powerful electromagnetic interference, the design of the anti-interference of the pick-up coil is studied. Furthermore, the radio frequency polarization method based on the capacitive-loaded coaxial cavity is proposed to improve the quality factor of the resonant circuit. In addition, a special test instrument is designed that enables the simultaneous testing of the classical proton precession and the Overhauser sensor. Overall, comparison experiments with and without the free radical of the Overhauser sensors show that the DNP effect does effectively improve the amplitude and quality of the FID signal, and the magnetic sensitivity, resolution and range reach to 10 pT/Hz1/2@1 Hz, 0.0023 nT and 20–100 μT, respectively.
机译:基于动态核极化(DNP)效应,提出了Overhauser地磁传感器的替代设计,该传感器可以增强质子极化并增加自由感应衰减(FID)信号的幅度。采用短脉冲方法将增强的质子磁化强度旋转到进动平面,以产生FID信号。为了减少强大的电磁干扰的负面影响,研究了拾波线圈的抗干扰设计。此外,提出了一种基于电容负载同轴腔的射频极化方法,以提高谐振电路的品质因数。此外,还设计了一种特殊的测试仪器,可以同时测试经典的质子进动和Overhauser传感器。总的来说,有和没有Overhauser传感器的自由基的对比实验表明,DNP效应确实有效地改善了FID信号的幅度和质量,并且磁灵敏度,分辨率和范围达到10 pT / Hz 1 / 2 @ 1 Hz,分别为0.0023 nT和20–100μT。

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