论文标题
微型双翼线圈,用于碱 - 金属蒸气磁力测定法
Miniature biplanar coils for alkali-metal-vapor magnetometry
论文作者
论文摘要
原子旋转传感器使用紧凑的,微型制造的软件包进行精确测量,使它们处于市场和研究应用方面的竞争位置。这些传感器(例如动态范围)的性能可以通过磁场控制来增强。在这项工作中,我们通过直接放置传感器来讨论针对三维局部磁场控制的微型线圈的设计,这是对以前使用的全局方法的灵活而紧凑的替代方案。线圈是使用溪流功能方法在双层表面上设计的,然后使用标准的印刷电路技术制造。显示在实验室规模的光学泵送磁力计的灵敏度,约为20 ft/hz $^{1/2} $。我们还演示了$ 7 \ times 17 \ times 17 $ mm $ $^3 $的线圈集的性能,该元素专门针对磁脑摄影进行了优化,其中多个传感器彼此接近。使用$^{87} $ rb自由感光光谱和其他技术的字段配置文件表征$> $> $> $ 96%的现场均匀性,而MEMS蒸气单元格的目标体积和距小区中心20 mm约1%的紧凑型静电场轮廓约为1%。
Atomic spin sensors offer precision measurements using compact, microfabricated packages, placing them in a competitive position for both market and research applications. Performance of these sensors such as dynamic range may be enhanced through magnetic field control. In this work, we discuss the design of miniature coils for three-dimensional, localized field control by direct placement around the sensor, as a flexible and compact alternative to global approaches used previously. Coils are designed on biplanar surfaces using a stream-function approach and then fabricated using standard printed-circuit techniques. Application to a laboratory-scale optically pumped magnetometer of sensitivity approximately 20 fT/Hz$^{1/2}$ is shown. We also demonstrate the performance of a coil set measuring $7 \times 17 \times 17$ mm$^3$ that is optimized specifically for magnetoencephalography, where multiple sensors are operated in proximity to one another. Characterization of the field profile using $^{87}$Rb free-induction spectroscopy and other techniques show $>$96% field homogeneity over the target volume of a MEMS vapor cell and a compact stray field contour of approximately 1% at 20 mm from the center of the cell.