论文标题

数字碱性旋转maser

A Digital Alkali Spin Maser

论文作者

Ingleby, Stuart, Griffin, Paul, Dyer, Terry, Mrozowski, Marcin, Riis, Erling

论文摘要

自振荡的原子磁力计,其中原子旋转在磁场中的动力是由共振剂调制驱动的,具有高灵敏度和动态范围。从检测到的信号到所应用调制的相位相互反馈会产生共振的旋转maser系统,对背景磁场的变化高度响应。在这里,我们显示了一个系统,其中通过集成到MASER反馈循环中的数字信号处理来满足共振进动的相位条件。该系统使用适度的芯片尺度激光器和质量生产的双通颅蒸气电池,并在50个微动物场中运行,使其成为适合于地球物理磁场的便携式测量的技术。我们证明了在1 S采样节奏下的Cramer-Rao下限限制分辨率,传感器带宽为10 kHz。该设备还代表了一类重要的原子系统,在该系统中,低延迟数字处理形成了相干驱动的量子系统的组成部分。

Self-oscillating atomic magnetometers, in which the precession of atomic spins in a magnetic field is driven by resonant modulation, offer high sensitivity and dynamic range. Phase-coherent feedback from the detected signal to the applied modulation creates a resonant spin maser system, highly responsive to changes in the background magnetic field. Here we show a system in which the phase condition for resonant precession is met by digital signal processing integrated into the maser feedback loop. This system uses a modest chip-scale laser and mass-produced dual-pass caesium vapour cell and operates in a 50 microtesla field, making it a suitable technology for portable measurements of the geophysical magnetic field. We demonstrate a Cramer-Rao lower bound-limited resolution of 50 fT at 1 s sampling cadence, and a sensor bandwidth of 10 kHz. This device also represents an important class of atomic system in which low-latency digital processing forms an integral part of a coherently-driven quantum system.

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