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Single-shot spatially-resolved imaging magnetometry using ultracold atoms

机译:使用超冷原子的单次空间分辨成像磁力计

摘要

A method and system for remotely imaging a magnetic field within an atom cloud is provided. An atom sample held in a magneto-optical trap is released, and the released atom cloud is illuminated by a Raman beam. Resonant atoms having certain velocities will absorb photon momenta from the Raman beam. The velocities of those resonant atoms will change in response to the absorbed momenta, causing a change in the travel distance of those atoms as compared with non-resonant atoms. The atom cloud is imaged by an imaging device such as a CCD camera and the presence of the resonant atoms is shown in the images as bright lines in the atom cloud. The distance traveled by the resonant atoms and therefore the separation of the lines in the image is a function of the magnetic fields in the atom cloud. The system and method of the present invention can image the magnetic fields within an atom cloud with a high spatial resolution over the entire atom cloud in a single imaging cycle, and analysis of the image provides information regarding the magnetic fields.
机译:提供了一种用于远程成像原子云内的磁场的方法和系统。释放保留在磁光阱中的原子样本,并通过拉曼光束照射释放的原子云。具有一定速度的共振原子将从拉曼光束吸收光子矩。这些共振原子的速度将响应于所吸收的动量而改变,从而导致这些原子与非共振原子相比的行进距离发生变化。原子云由诸如CCD摄像机之类的成像设备成像,共振原子的存在在图像中显示为原子云中的亮线。共振原子行进的距离以及因此图像中的线间距是原子云中磁场的函数。本发明的系统和方法可以在单个成像周期内在整个原子云上以高空间分辨率对原子云内的磁场成像,并且图像分析提供了关于磁场的信息。

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