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Subwavelength microwave electric-field imaging using Rydberg atoms inside atomic vapor cells

机译:使用原子蒸气池内的里德堡原子的亚波长微波电场成像

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We have recently shown [Nat. Phys. 8, 819 (2012)] that Alkali atoms contained in a vapor cell can serve as a highly accurate standard for microwave (MW) electric field strength as well as polarization. Here we show for the first time that Rydberg atom electromagnetically induced transparency can be used to image MW electric fields with unprecedented precision. The spatial resolution of the method is far into the subwavelength regime ~λ/650 or 66 μm at 6.9 GHz. The electric field resolutions are similar to those we have already demonstrated ~50 μV cm~(-1). Our experimental results agree with finite element calculations of test electric-field patterns.
机译:我们最近显示了[Nat。物理8,8,819(2012)]认为,蒸气室中所含的碱原子可以作为微波(MW)电场强度和极化的高精度标准。在这里,我们首次展示了里德堡原子电磁感应的透明性可以用于以前所未有的精度成像兆瓦级电场。该方法的空间分辨率在6.9 GHz时远处于亚波长范围〜λ/ 650或66μm。电场分辨率类似于我们已经证明的〜50μVcm〜(-1)。我们的实验结果与测试电场模式的有限元计算吻合。

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