论文标题

直接控制基于NV中心的冷原子实验的高磁场

Direct control of high magnetic fields for cold atom experiments based on NV centers

论文作者

Hesse, Alexander, Köster, Kerim, Steiner, Jakob, Michl, Julia, Vorobyov, Vadim, Dasari, Durga, Wrachtrup, Jörg, Jendrzejewski, Fred

论文摘要

在冷原子气体中,原子之间的相互作用可以通过外部磁场直接控制。通常通过通过一对产生大偏置场的Helmholtz线圈稳定电流来间接地进行磁场控制。在这里,我们通过直接反馈方案克服了这种间接控制的局限性,该方案基于充当磁场传感器的氮气接种中心。这使我们可以在24小时内测量和稳定4.66 mt的磁场,至12 nt RMS噪声,以1 Hz的带宽测量。在集成时间20分钟后,我们的控制能力大于1 ppm,从而确保了实验的长期稳定性。这种方法将直接磁场控制扩展到强磁场,这可以在此制度中实现新的精确量子模拟。

In cold atomic gases the interactions between the atoms are directly controllable through external magnetic fields. The magnetic field control is typically performed indirectly by stabilizing the current through a pair of Helmholtz coils, which produce this large bias field. Here, we overcome the limitations of such an indirect control through a direct feedback scheme, which is based on nitrogen-vacancy centers acting as a magnetic field sensor. This allows us to measure and stabilize fields of 4.66 mT down to 12 nT RMS noise over the course of 24 h, measured on a 1 Hz bandwidth. We achieve a control of better than 1 ppm after 20 minutes of integration time, ensuring high long-term stability for experiments. This approach extends direct magnetic field control to strong magnetic fields, which could enable new precise quantum simulations in this regime.

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