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Precise Measurement of Magnetic Field Gradients from Free Spin Precession Signals of $^{3}$He and $^{129}$Xe Magnetometers

机译:根据$ ^ {3} $ He和$ ^ {129} $ Xe磁强计的自由自旋进动信号精确测量磁场梯度

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摘要

We report on precise measurements of magnetic field gradients extracted from transverse relaxation rates of precessing spin samples. The experimental approach is based on the free precession of gaseous, nuclear spin polarized $^3$He and $^{129}$Xe atoms in a spherical cell inside a magnetic guiding field of about 400 nT using LT$_C$ SQUIDs as low-noise magnetic flux detectors. The transverse relaxation rates of both spin species are simultaneously monitored as magnetic field gradients are varied. For transverse relaxation times reaching 100 h, the residual longitudinal field gradient across the spin sample could be deduced to be$|\vec{\nabla}B_z|=(5.6 \pm 0.4)$ pT/cm. The method takes advantage of the high signal-to-noise ratio with which the decaying spin precession signal can be monitored that finally leads to the exceptional accuracy to determine magnetic field gradients at the sub pT/cm scale.
机译:我们报告了从旋进样品的横向弛豫率中提取的磁场梯度的精确测量值。实验方法基于使用LT $ _C $ SQUIDs时低的气态,核自旋极化的球形^ $ 3 $ He和$ ^ {129} $ Xe原子在约400 nT磁场内的球形单元中的自由进动。 -噪声磁通检测器。随着磁场梯度的变化,两种自旋物种的横向弛豫速率会同时受到监控。对于达到100 h的横向弛豫时间,可以推导出整个自旋样品的残余纵向场梯度为|| vec {\ nabla} B_z | =(5.6 \ pm 0.4)$ pT / cm。该方法利用了高信噪比的优势,通过该信噪比可以监控自旋旋进旋进信号,从而最终以极高的精度确定亚pT / cm标度下的磁场梯度。

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