Cold-atom buoy: A differential magnetic sensing technique in cold quadrupole traps
Árpád Kurkó, Dávid Nagy, Alexandra Simon, Thomas W. Clark, András Dombi, D. Varga, F. Williams, József Fortágh 等 10 位
HUN-REN Wigner Research Centre for Physics Eötvös Loránd University University of Tübingen Budapest University of Technology and Economics
阅读操作
确认中在文库中上传 PDF 后可生成中文音频讲解。
摘要与影响
We present a differential technique for vector magnetic sensing based on a cold-atom cloud in a magnetic quadrupole trap. An external homogeneous magnetic field displaces the trap center in a direction and magnitude proportional to the field. By reversing the quadrupole polarity between experimental shots and comparing the resulting cloud positions, we extract a differential displacement signal that is free from common-mode effects such as gravity and weak magnetic-field inhomogeneities. The signal is directionally proportional to the external field and requires only absorption imaging, without spectroscopic interrogation. Assuming micron-scale position resolution, the technique enables field resolution at the milli-Gauss level. It offers a practical tool for field compensation in magnetically sensitive experimental stages, bridging operational regimes from Earth-level fields to atomic magnetometry. A straightforward extension to full three-dimensional sensing is possible with only a minimal addition to standard cold-atom infrastructure.
逐年被引趋势
暂无年度引用数据
关键指标
同类平均 = 1
同领域 · 同年份 · 同类型
Google Scholar 与 OpenAlex 的被引统计范围不同,数值存在差异属正常。
AI 辅助阅读
依据:摘要
可就本文提问;依据不足时会说明。
学术脉络
学科主题
物理Cold Atom Physics and Bose-Einstein Condensates
Atomic and Subatomic Physics Research · Advanced Frequency and Time Standards
参考文献 54
此处列出前 3 条