论文标题
通过适应性完整的过渡重叠,使用氮 - 呈磁值的敏感性增强磁力测定法
Sensitivity-enhanced magnetometry using nitrogen-vacancy ensembles via adaptively complete transitions overlapping
论文作者
论文摘要
钻石中的氮呈(NV)中心是适当的高敏性磁力测定传感器,近年来引起了极大的兴趣。在这里,我们通过自适应完整的过渡与偏置磁场重叠的自适应完整过渡相同,同样投射到所有现有的NV方向上。在这种条件下,与不同NV方向相对应的自旋跃迁完全重叠,这将带来明显改善的光致发光对比度。我们进一步将粒子群优化引入校准过程中,以使用计算机控制的Helmholtz线圈自动自动生成此偏置磁场。通过应用这项技术,我们实现了大约1.5倍的增强,并达到了$ \ rm855 \ rm855 \ pt/\ sqrt {hz} $的磁场敏感性,用于完全重叠的过渡,而$ \ rm 1.33 \ nt/\ nt/\ sqrt {\ sqrt {\ rm hz} $ for a Sland Transition $ intrients $ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ nt/\ rm。我们的方法可以方便地应用于方向固定的磁传感,并获得集合-NV磁力测定法的潜在最大灵敏度。
Nitrogen-vacancy (NV) centers in diamond are suitable sensors of high-sensitivity magnetometry which have attracted much interest in recent years. Here, we demonstrate sensitivity-enhanced ensembles magnetometry via adaptively complete transitions overlapping with a bias magnetic field equally projecting onto all existing NV orientations. Under such conditions, the spin transitions corresponding to different NV orientations are completely overlapped which will bring about an obviously improved photoluminescence contrast. And we further introduce particle swarm optimization into the calibration process to generate this bias magnetic field automatically and adaptively using computer-controlled Helmholtz coils. By applying this technique, we realize an approximate 1.5 times enhancement and reach the magnetic field sensitivity of $\rm855\ pT/\sqrt{Hz}$ for a completely overlapped transitions compared to $\rm 1.33\ nT/\sqrt{\rm Hz}$ for a separate transition on continuous-wave magnetometry. Our approach can be conveniently applied to direction-fixed magnetic sensing and obtain the potentially maximum sensitivity of ensemble-NV magnetometry.