Vinante Andrea, Timberlake Chris, Budker Dmitry, Kimball Derek F Jackson, Sushkov Alexander O, Ulbricht Hendrik
Istituto di Fotonica e Nanotecnologie CNR and Fondazione Bruno Kessler, I-38123 Povo, Trento, Italy.
Department of Physics and Astronomy, University of Southampton, Southampton SO17 1BJ, United Kingdom.
Phys Rev Lett. 2021 Aug 13;127(7):070801. doi: 10.1103/PhysRevLett.127.070801.
We discuss the fundamental noise limitations of a ferromagnetic torque sensor based on a levitated magnet in the tipping regime. We evaluate the optimal magnetic field resolution taking into account the thermomechanical noise and the mechanical detection noise at the standard quantum limit. We find that the energy resolution limit, pointed out in recent literature as a relevant benchmark for most classes of magnetometers, can be surpassed by many orders of magnitude. Moreover, similarly to the case of a ferromagnetic gyroscope, it is also possible to surpass the standard quantum limit for magnetometry with independent spins, arising from spin-projection noise. Our finding indicates that magnetomechanical systems optimized for magnetometry can achieve a magnetic field resolution per unit volume several orders of magnitude better than any conventional magnetometer. We discuss possible implications, focusing on fundamental physics problems such as the search for exotic interactions beyond the standard model.
我们讨论了基于悬浮磁体在倾翻状态下的铁磁扭矩传感器的基本噪声限制。我们在考虑热机械噪声和标准量子极限下的机械检测噪声的情况下评估了最佳磁场分辨率。我们发现,近期文献中指出的作为大多数磁力计相关基准的能量分辨率极限,可以被超越许多数量级。此外,类似于铁磁陀螺仪的情况,对于由自旋投影噪声引起的独立自旋磁力测量,也有可能超越标准量子极限。我们的发现表明,针对磁力测量优化的磁机械系统每单位体积可实现的磁场分辨率比任何传统磁力计要好几个数量级。我们讨论了可能的影响,重点关注诸如寻找超出标准模型的奇异相互作用等基础物理问题。