Babashah Hossein, Losero Elena, Galland Christophe
Institute of Physics, Ecole Polytechnique Federale de Lausanne, Lausanne, Vaud, Switzerland.
Wainvam-e, Lorient, France.
Open Res Eur. 2024 Mar 1;4:44. doi: 10.12688/openreseurope.16875.1. eCollection 2024.
Nitrogen-vacancy (NV) centers in diamond have emerged as promising quantum sensors due to their highly coherent and optically addressable spin states with potential applications in high-sensitivity magnetometry. Homogeneously addressing large ensembles of NV centers offers clear benefit in terms of sensing precision as well as in fundamental studies of collective effects. Such experiments require a spatially uniform, intense, and broadband microwave field that can be difficult to generate. Previous approaches, such as copper wires, loop coils, and planar structures, have shown limitations in field homogeneity, bandwidth, and integration in compact devices. In this paper, we present a coplanar waveguide (CPW) gold coil patterned on a 3 × 3 mm diamond substrate, offering full integration, enhanced stability, and broad bandwidth suitable for various NV sensing applications. Coil fabricated on diamond offers several advantages for magnetometry with NV centers ensemble, including enhanced heat dissipation, seamless integration, scalability, and miniaturization potential. We optimize critical geometrical parameters to achieve a homogeneous magnetic field with a coefficient of variation of less than 6% over an area of 0.5 mm and present experimental results confirming the performance of the proposed CPW coil.
由于金刚石中的氮空位(NV)中心具有高度相干且可光学寻址的自旋态,在高灵敏度磁力测量中具有潜在应用,因此已成为很有前景的量子传感器。均匀地寻址大量NV中心在传感精度以及集体效应的基础研究方面都具有明显优势。此类实验需要一个空间均匀、强度高且宽带的微波场,而这可能很难产生。以前的方法,如铜线、环形线圈和平面结构,在磁场均匀性、带宽以及在紧凑型设备中的集成方面都存在局限性。在本文中,我们展示了一种在3×3毫米金刚石衬底上图案化的共面波导(CPW)金线圈,它具有完全集成、增强的稳定性以及适用于各种NV传感应用的宽带宽。在金刚石上制造的线圈对于使用NV中心系综进行磁力测量具有几个优点,包括增强的散热、无缝集成、可扩展性和小型化潜力。我们优化关键几何参数,以在0.5毫米的面积上实现变化系数小于6%的均匀磁场,并给出实验结果证实了所提出的CPW线圈的性能。