Electric field intensity measurement by using doublet electromagnetically induced transparency of cold Rb Rydberg atoms

Author:

Gong 宫 Ting 廷,Shi 师 Shuai 帅,Ji 姬 Zhonghua 中华,Guo 郭 Guqing 古青,Sun 孙 Xiaocong 小聪,Tian 田 Yali 亚莉,Qiu 邱 Xuanbing 选兵,Li 李 Chuanliang 传亮,Zhao 赵 Yanting 延霆,Jia 贾 Suotang 锁堂

Abstract

We demonstrate a simple method to measure electric field intensity by using doublet electromagnetically induced transparency (EIT) spectra of cold Rb Rydberg atoms, where the frequency of the coupling laser does not need to be locked. Based on the Stark splitting of the Rb Rydberg state, 10D3/2, under electric fields and the corresponding calculated polarizabilities, the real electric field intensity is calculated using the difference in radio-frequency diffraction between two acousto-optic modulators, which acts as a frequency criterion that allows us to measure the electrical field without locking the coupling laser. The value measured by this simple method shows a good agreement with our previous work [Opt. Express 29 1558 (2021)] where the frequency of the coupling laser needs to be locked with an additional EIT spectrum based on atom vapor and a proportional–integral–differential feedback circuit. Our presented method can also be extended to the measurement of electric field based on hot Rydberg atom vapor, which has application in industry.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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