论文标题
单光束双通小型化原子磁力计,用于生物磁成像系统
Single-beam double-pass miniaturized atomic magnetometer for bio-magnetic imaging systems
论文作者
论文摘要
微型原子磁力计,尤其是自旋交换无原子磁力计,在临床成像应用中已经出现了,例如磁心电图和磁脑摄影。微型化,便携性和低成本是生物磁成像技术的主要开发目标,以及高灵敏度,空间和时间分辨率。在本文中,我们提出了一种基于原子磁力计的生物磁成像系统的低成本解决方案,其中一种激光源用于多通道原子磁力计传感器阵列。为微型自旋交换无原子磁力计展示了一种新颖的设计,该磁力计由基于光纤循环器的单光束双通型构型组成。温度和激光功率对零场磁共振线宽度的影响是表征的,实验结果表明,与传统的单光束单频构型相比,目前的设计实现了更好的性能。噪声功率谱显示,闭环微型原子磁力计达到的灵敏度约为120 ft/hz $^{1/2} $,在10 Hz的带宽下。该设计特别适合在阵列中运行的原子磁力计,作为低成本生物磁成像系统的基本建筑元素。
Miniaturized atomic magnetometers, particularly spin-exchange relaxation-free atomic magnetometers, have been emerging in clinical imaging applications such magnetocardiography and magnetoencephalography. Miniaturization, portability, and low cost are primary development targets for bio-magnetic imaging technologies, as well as high sensitivity and spatial and time resolution. In this paper, we propose a low-cost solution for a bio-magnetic imaging system based on atomic magnetometers, in which one laser source is used for a multi-channel atomic magnetometer sensor array. A novel design is demonstrated for a miniaturized spin-exchange relaxation-free atomic magnetometer, consisting of a single-beam double-pass configuration based on an optical fiber circulator. The effects of temperature and laser power on the zero-field magnetic resonance line-width are characterized, and the experimental results show that the present design achieves better performance, than a traditional single-beam single-pass configuration. The noise power spectrum shows that the closed-loop miniaturized atomic magnetometer reaches a sensitivity of approximately 120 fT/Hz$^{1/2}$ at a bandwidth of 10 Hz. This design is especially suitable for atomic magnetometers operating in arrays as a basic building element for low-cost bio-magnetic imaging systems.