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High-resolution imaging using a high-T-c superconducting quantum interference device (SQUID) magnetometer

机译:使用高T-c超导量子干涉仪(SQUID)磁力计的高分辨率成像

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Most rock magnetometers measure the bulk remanent magnetization of I-inch cylindrical samples (centimeter scale) or even larger volumes of drill cores. High- T-c superconducting quantum interference device (SQUID) magnetometers are able to measure magnetic fields on rock surfaces at higher resolution on a millimeter scale: the fields of discrete rock-forming magnetic mineral grains or fine magnetic rock textures and structures can be observed when scanning across selected surface areas. The stability problems of a commercially available high- T-c SQUID magnetometer have largely been solved by improving the magnetic shielding and reducing the noise due to turbulent boiling of liquid nitrogen. Magnetizations as weak as 5x10(-4) Aim can now be discriminated with a resolution of 1 mm. A software package has been developed to eliminate measurement errors arising from instrumental drift. The program also calculates the downwards continuation of the field data and offers full inversion for the vertical magnetization component. A synthetic sample demonstrates the performance of the SQUID sensor and the inversion software. The potential of high-resolution magnetic imaging is shown by measuring three rock samples with very different magnetic properties. [References: 22]
机译:大多数岩石磁力计测量的是I英寸圆柱样品(厘米级)或更大体积的钻芯的剩余磁化强度。高Tc超导量子干扰设备(SQUID)磁力计能够以毫米级的高分辨率测量岩石表面的磁场:扫描时可以观察到形成岩石的离散磁性矿物颗粒或精细的磁性岩石纹理和结构的磁场跨选定的表面积。通过改善磁屏蔽性能并减少由于液氮湍流沸腾引起的噪声,很大程度上解决了市售高T-c SQUID磁力计的稳定性问题。现在可以以1毫米的分辨率来区分弱至5x10(-4)Aim的磁化强度。已经开发出软件包来消除由仪器漂移引起的测量误差。该程序还计算场数据的向下连续性,​​并提供垂直磁化分量的完全反演。合成样本演示了SQUID传感器和反演软件的性能。通过测量三个磁特性差异很大的岩石样品,可以显示高分辨率磁成像的潜力。 [参考:22]

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