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A quantum-based power standard: Using Rydberg atoms for a SI-traceable radio-frequency power measurement technique in rectangular waveguides

机译:基于量子的功率标准:使用里德堡原子进行矩形波导中可溯源到SI的射频功率测量技术

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In this work, we demonstrate an approach for determining radio-frequency (RF) power using electromagnetically induced transparency (EIT) in a Rydberg atomic vapor. This is accomplished by placing alkali atomic vapor in a rectangular waveguide and measuring the electric (E) field strength (utilizing EIT and Autler-Townes splitting) for a wave propagating down the waveguide. The RF power carried by the wave is then related to this measured E-field, which leads to a direct International System of Units measurement of RF power. To demonstrate this approach, we first measure the field distribution of the fundamental mode in the waveguide and then determine the power carried by the wave at both 19.629 GHz and 26.526 GHz from the measured E-field. We show comparisons between the RF power obtained with this technique and those obtained with a conventional power meter.
机译:在这项工作中,我们演示了一种使用里德堡原子蒸气中的电磁感应透明性(EIT)确定射频(RF)功率的方法。这是通过将碱性原子蒸气放在矩形波导中并测量沿波导向下传播的电波的电场强度(利用EIT和Autler-Townes分裂)来实现的。然后,电波携带的RF功率与此测量的电场相关,这导致直接的国际单位制RF功率测量。为了演示这种方法,我们首先测量波导中基本模式的场分布,然后根据测量的电场确定在19.629 GHz和26.526 GHz处的波所携带的功率。我们显示了使用此技术获得的RF功率与使用常规功率计获得的RF功率之间的比较。

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