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Measuring the polarization of electromagnetic fields using Rabi-rate measurements with spatial resolution: Experiment and theory

机译:利用空间分辨率测量使用Rabi速率测量的电磁场极化:实验与理论

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When internal states of atoms are manipulated using coherent optical or radio-frequency (rf) radiation, it is essential to knowthe polarization of the radiation with respect to the quantization axis of the atom.We first present a measurement of the two-dimensional spatial distribution of the electric-field amplitude of a linearly polarized pulsed rf electric field at ~25.6 GHz and its angle with respect to a static electric field. The measurements exploit coherent population transfer between the 35s and 35p Rydberg states of helium atoms in a pulsed supersonic beam. Based on this experimental result, we develop a general framework in the form of a set of equations relating the five independent polarization parameters of a coherently oscillating field in a fixed laboratory frame to Rabi rates of transitions between a ground and three excited states of an atom with arbitrary quantization axis. We then explain how these equations can be used to fully characterize the polarization in a minimum of five Rabi-rate measurements by rotation of an external bias field, or, knowing the polarization of the driving field, to determine the orientation of the static field using two measurements. The presented technique is not limited to Rydberg atoms and rf fields but can also be applied to characterize optical fields. The technique has the potential for sensing the spatiotemporal properties of electromagnetic fields, e.g., in metrology devices or in hybrid experiments involving atoms close to surfaces.
机译:当使用相干光或射频(RF)辐射操纵原子的内部状态时,必须知道辐射相对于原子的量化轴的偏振。我们首先介绍了二维空间分布的测量静电场〜25.6 GHz的线性偏振脉冲RF电场的电场幅度。测量在脉冲超声波束中的35s和35p rydberg状态之间采用连贯的人口转移。基于该实验结果,我们以一组方程的形式开发了一般框架,其形式将固定实验室帧中的连贯的实验室帧中的一个独立偏振参数与地面和三个激发态之间的Rabi转换率的连续振荡场相对具有任意量化轴。然后,我们解释了如何通过外部偏置字段旋转来完全三个Rabi速率测量来完全表征这些等式的偏振,或者知道驱动场的偏振,以确定静态场的方向两次测量。所提出的技术不限于雷德伯格原子和RF场,而且还可以应用于特征光学字段。该技术具有感测电磁场的时空性质,例如在计量装置中或涉及靠近表面的原子的混合实验。

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