论文标题
台式磁性屏蔽,用于基准测试原子磁力计
Benchtop magnetic shielding for benchmarking atomic magnetometers
论文作者
论文摘要
在这里,设计,构造,测试和操作的台式混合磁屏将装有四个Mumetal气缸和9个内部柔性印刷电路板。盾牌专门设计为用于建筑和操作超敏感量子磁力计的测试床。 Mumetal气缸的几何形状和间距被优化,以最大化屏蔽效率,同时保持Johnson Noise $ <15 $ ft/$ \ sqrt {} $ Hz。盾牌中心的实验尺寸显示$ \左(1.0 \ pm0.1 \ right){\ times} 10^6 $的无源屏蔽效率,沿屏蔽轴施加了$ 0.2 $ Hz振荡场。九个灵活的印刷电路板产生了三个均匀的字段,它们都偏离了$ {\ leq} 0.5 $%,沿着$ 50 $ 50 $%的内部屏蔽轴,五个线性现场梯度和一个二阶梯度,这些阶段梯度和一个二阶梯度,这些梯度都偏离了$ {\ leq} 4 $%的偏差,分别从完美的线性性和曲率区域中分别为目标。一起,调整了目标场振幅,以最大程度地沿着$ 40 $的内屏轴轴降低残余静态场,并使用原子磁力计绘制。在该地区,Active Null分别以$ 19.5 $和$ 19.8 $的因素减少了三个统一场和六个梯度的幅度的规范,从而将总静态场从1.68美元$ NT降低到0.23美元。
Here, a benchtop hybrid magnetic shield containing four mumetal cylinders and nine internal flexible printed circuit boards is designed, constructed, tested, and operated. The shield is designed specifically as a test-bed for building and operating ultra-sensitive quantum magnetometers. The geometry and spacing of the mumetal cylinders are optimized to maximize shielding efficiency while maintaining Johnson noise $<15$ fT/$\sqrt{}$Hz. Experimental measurements at the shield's center show passive shielding efficiency of $\left(1.0\pm0.1\right){\times}10^6$ for a $0.2$ Hz oscillating field applied along the shield's axis. The nine flexible printed circuit boards generate three uniform fields, which all deviate from perfect uniformity by ${\leq}0.5$% along $50$% of the inner shield axis, and five linear field gradients and one second-order gradient, which all deviate by ${\leq}4$% from perfect linearity and curvature, respectively, over measured target regions. Together, the target field amplitudes are adjusted to minimize the remnant static field along $40$% of the inner shield axis, as mapped using an atomic magnetometer. In this region, the active null reduces the norm of the magnitudes of the three uniform fields and six gradients by factors of $19.5$ and $19.8$, respectively, thereby reducing the total static field from $1.68$ nT to $0.23$ nT.