Jani Mona, Czarnecka Paulina, Orzechowska Zuzanna, Mrózek Mariusz, Gawlik Wojciech, Wojciechowski Adam M
Marian Smoluchowski Institute of Physics, Jagiellonian University, Łojasiewicza, 11, 30-348 Kraków, Poland.
ACS Appl Nano Mater. 2023 Jun 14;6(13):11077-11084. doi: 10.1021/acsanm.3c00887. eCollection 2023 Jul 14.
We demonstrate a photonic sensor of the magnetic field and its gradients with remote readout. The sensor is based on optically detected magnetic resonance (ODMR) in nanodiamonds with nitrogen-vacancy color centers that are covalently attached as a thin film on one facet of an optical fiber bundle. By measuring ODMR signals from a group of individual fibers in an ∼0.5-mm-wide imaging bundle, differences of local magnetic field strengths and magnetic field gradients are determined across the plane of the bundle facet. The measured gradients are created by direct electric currents flowing in a wire placed near the nanodiamond film. The measurement enabled the determination of the net magnetic field corresponding to various current directions and their corresponding magnetic field gradients. This demonstration opens up a perspective for compact fiber-based endoscopy, with additional avenues for remote and sensitive magnetic field detection with submicrometer spatial resolution under ambient conditions.
我们展示了一种具有远程读出功能的磁场及其梯度的光子传感器。该传感器基于具有氮空位色心的纳米金刚石中的光探测磁共振(ODMR),这些氮空位色心以薄膜形式共价附着在光纤束的一个端面上。通过测量来自约0.5毫米宽成像束中一组单独光纤的ODMR信号,可以确定束端面平面上局部磁场强度和磁场梯度的差异。所测量的梯度是由在纳米金刚石薄膜附近的导线中流动的直流电流产生的。该测量能够确定对应于各种电流方向及其相应磁场梯度的净磁场。这一演示为紧凑型光纤内窥镜检查开辟了前景,为在环境条件下以亚微米空间分辨率进行远程和灵敏的磁场检测提供了更多途径。