Kumar Himanshu, Dasika Shishir, Mangat Maheshwar, Tallur Siddharth, Saha Kasturi
Department of Electrical Engineering, Indian Institute of Technology Bombay, Powai, Maharashtra 400076, India.
Center of Excellence Semiconductor Technologies (SemiX), Indian Institute of Technology Bombay, Powai, Maharashtra 400076, India.
Rev Sci Instrum. 2024 Jul 1;95(7). doi: 10.1063/5.0205105.
Nitrogen vacancy (NV) centers in diamonds have been explored for a wide range of sensing applications in the last decade due to their unique quantum properties. In this work, we report a compact and portable magnetometer with an ensemble of NV centers, which we call the Quantum MagPI (Quantum Magnetometer with Proportional Integral control). Our fully integrated compact sensor assembly and control electronics fit inside a 10 × 10 × 7 cm3 box and a 30 × 25 × 5 cm3 rack-mountable box, respectively. We achieve a bandwidth normalized sensitivity of ∼10 nT/Hz. Using closed-loop feedback for locking to the resonance frequency, we extend the linear dynamic range to 200 μT (20× improvement compared to the intrinsic dynamic range) without compromising the sensitivity. We report a detailed performance analysis of the magnetometer through measurements of noise spectra, Allan deviation, and tracking of nT-level magnetic fields in real-time. In addition, we demonstrate the utility of such a magnetometer by real-time tracking of the movement of an elevator car and door opening events by measuring the projection of the magnetic field along one of the NV-axes under ambient temperature and humidity conditions.
在过去十年中,由于其独特的量子特性,金刚石中的氮空位(NV)中心已被广泛用于各种传感应用。在这项工作中,我们报告了一种具有NV中心集合的紧凑型便携式磁力计,我们称之为量子磁PI(具有比例积分控制的量子磁力计)。我们完全集成的紧凑型传感器组件和控制电子设备分别可安装在一个10×10×7立方厘米的盒子和一个30×25×5立方厘米的机架式盒子内。我们实现了约10 nT/Hz的带宽归一化灵敏度。通过使用闭环反馈锁定到共振频率,我们将线性动态范围扩展到200 μT(与固有动态范围相比提高了20倍),同时不影响灵敏度。我们通过测量噪声谱、阿伦偏差以及实时跟踪nT级磁场,对磁力计进行了详细的性能分析。此外,我们通过在环境温度和湿度条件下测量沿NV轴之一的磁场投影,实时跟踪电梯轿厢的运动和开门事件,展示了这种磁力计的实用性。