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A vapor-cell atomic sensor for radio-frequency field detection using a polarization-selective field enhancement resonator

机译:使用极化选择场增强谐振器进行射频场检测的蒸气电池原子传感器

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摘要

We present a hybrid atomic sensor that realizes radio-frequency electric field detection with intrinsic field enhancement and polarization selectivity for robust high-sensitivity field measurement. The sensor incorporates a passive resonator element integrated with an atomic vapor cell that provides enhancement and polarization selectivity of incident radio-frequency fields. The enhanced intra-cavity radio-frequency field is measured by atoms using a quantum-optical readout of AC level shifts of field-sensitive atomic Rydberg states. In our demonstration, we employ a split field-enhancement resonator embedded in a rubidium vapor cell to enhance and detect C-band radio-frequency fields. We observe a field enhancement equivalent to a 24 dB gain in intensity sensitivity. The spatial profile of the resonant field mode inside the field-enhancement cavity is characterized and robust polarization measurement of the incident field is demonstrated. The measured performance metrics of the sensor are in good agreement with simulations. Applications of such atomic sensors in ultra-weak radio-frequency detection and advanced measurement capabilities are discussed. Published by AIP Publishing.
机译:我们提出了一种混合原子传感器,该传感器可实现具有固有场增强和极化选择性的射频电场检测,从而实现可靠的高灵敏度场测量。该传感器包含一个与原子蒸气池集成在一起的无源谐振器元件,该元件提供了入射射频场的增强和极化选择性。增强型腔内射频场是由原子使用对场敏感的原子里德堡态的AC能级位移的量子光学读数来测量的。在我们的演示中,我们使用嵌入field蒸气池中的分裂场增强谐振器来增强和检测C波段射频场。我们观察到场增强相当于强度灵敏度提高了24 dB。表征了场增强腔内共振场模式的空间分布,并证明了入射场的鲁棒极化测量。传感器的测量性能指标与仿真结果非常吻合。讨论了这种原子传感器在超弱射频检测和高级测量功能中的应用。由AIP Publishing发布。

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