论文标题
集成的光泵磁力计,用于在地球磁场内进行测量
Integrated optically pumped magnetometer for measurements within Earth's magnetic field
论文作者
论文摘要
我们提出一种便携式光学泵送磁力计仪器,用于在地球磁场内进行超敏感的测量。系统的中心部分是在轻移度分散的MZ模式下操作基于MEMS的CS蒸气单元的传感器头。它通过柔性电缆连接到紧凑的电池驱动的电子模块。我们简要回顾了设备的工作原理,并详细介绍了传感器头和电子设备的实现。我们在50 UT的静态磁场振幅中显示了屏蔽和未屏蔽的测量值,该磁场幅度显示了传感器系统的噪声水平,低至140 ft/\ sqrt {Hz}和传感器带宽为几百Hz。在对传感器噪声的详细分析中,我们揭示了该系统受到直接策略的技术来源的限制,以进一步改进其基本噪声限制12英尺/\ sqrt {Hz}。我们通过基于BLOCH方程来评估通过理论建模定义传感器带宽的参数。最后,我们将传感器的性能与商业鱿鱼系统进行比较,在典型的地磁天文台实践和地磁前景中。
We present a portable optically pumped magnetometer instrument for ultra-sensitive measurements within the Earth's magnetic field. The central part of the system is a sensor head operating a MEMS-based Cs vapor cell in the light-shift dispersed Mz mode. It is connected to a compact, battery-driven electronics module by a flexible cable. We briefly review the working principles of the device and detail on the realization of both, sensor head and electronics. We show shielded and unshielded measurements within a static magnetic field amplitude of 50 uT demonstrating a noise level of the sensor system down to 140 fT/\sqrt{Hz} and a sensor bandwidth of several 100 Hz. In a detailed analysis of sensor noise we reveal the system to be limited by technical sources with straightforward strategies for further improvement towards its fundamental noise limit of 12 fT/\sqrt{Hz}. We assess the parameters defining the sensor bandwidth by theoretical modeling based on the Bloch equations. Finally, we compare our sensors' performance to a commercial SQUID system in a measurement environment typical for geomagnetic observatory practice and geomagnetic prospection.