物理
磁场
拉莫尔进动
极化(电化学)
磁强计
原子物理学
光学
计算物理学
化学
量子力学
物理化学
作者
Francesco Castellucci,Thomas W. Clark,Adam Selyem,Jinwen Wang,Sonja Franke‐Arnold
标识
DOI:10.1103/physrevlett.127.233202
摘要
We describe and demonstrate how 3D magnetic field alignment can be inferred from single absorption images of an atomic cloud. While optically pumped magnetometers conventionally rely on temporal measurement of the Larmor precession of atomic dipoles, here a cold atomic vapor provides a spatial interface between vector light and external magnetic fields. Using a vector vortex beam, we inscribe structured atomic spin polarization in a cloud of cold rubidium atoms and record images of the resulting absorption patterns. The polar angle of an external magnetic field can then be deduced with spatial Fourier analysis. This effect presents an alternative concept for detecting magnetic vector fields and demonstrates, more generally, how introducing spatial phases between atomic energy levels can translate transient effects to the spatial domain.
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