Influence of the size of the cubic atomic vapor cell on a Rydberg atomic microwave sensor.

Applied optics Pub Date : 2024-12-01 DOI:10.1364/AO.542721
Liting Zhang, Zhonghao Li, Shuai Liu, Shihong Xu, Jingxia Kong, Rui Zhao, Hao Guo, Huanfei Wen, Xin Li, Zongmin Ma, Jun Tang, Jun Liu
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Abstract

This study investigates the enhancement of the microwave (MW) electric (E) field due to the Fabry-Perot (FP) effect in cubic cells of varying sizes, and it is confirmed that the lower limit of MW power can be measured. Theoretical simulations and empirical validations are conducted for three vapor cells of different sizes. At a MW frequency of 23.904 GHz, the FP effect in the 10 mm cell is found to significantly enhance the MW E-field relative to larger cells (20 and 25 mm). The results show that, due to the existence of the FP effect, the lower limit of MW power can be measured in the cubic atomic vapor cells with different sizes. These findings contribute to the advancement of the vapor cell design for quantum accuracy measurements and the development of future atomic MW communication technologies.

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立方原子蒸发池尺寸对雷德堡原子微波传感器的影响。
本研究探讨了不同尺寸的立方体电池中法布里-珀罗(FP)效应导致的微波(MW)电场(E)增强,并证实可以测量到 MW 功率的下限。我们对三个不同尺寸的蒸气电池进行了理论模拟和经验验证。在 23.904 GHz 的 MW 频率下,与较大的电池(20 毫米和 25 毫米)相比,10 毫米电池中的 FP 效应显著增强了 MW 电场。结果表明,由于 FP 效应的存在,可以在不同尺寸的立方原子蒸气电池中测量出 MW 功率的下限。这些发现有助于推进量子精度测量的蒸气电池设计和未来原子兆瓦通信技术的发展。
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