Rydberg-atom-based digital communication using a continuously tunable radio-frequency carrier

无线电频率 物理 带宽(计算) 电磁感应透明 光学 光电子学 电信 计算机科学
作者
Zhenfei Song,Hongping Liu,Xiaochi Liu,Wanfeng Zhang,Haiyang Zou,Jie Zhang,Jifeng Qu
出处
期刊:Optics Express [The Optical Society]
卷期号:27 (6): 8848-8848 被引量:134
标识
DOI:10.1364/oe.27.008848
摘要

High-sensitive measurement of radio-frequency (RF) electric field is available via the electromagnetically induced transparency (EIT) effect of Rydberg atom at room-temperature, which has been developed to be a promising atomic RF receiver. In this Letter, we investigate the credibility of the digital communication via this quantum-based antenna over the entire continuously tunable RF-carrier. Our experiment shows that digital communication at a rate of 500 kbps performs reliably within a tunable bandwidth of 200 MHz at carrier 10.22 GHz and a bit error rate (BER) appears out of this range, for example, the BER runs up to 15 % at RF-detuning $\pm150$ MHz. In the measurement, the time-variant RF field is retrieved by detecting the density of the probe laser at the center frequency of RF-induced symmetric or asymmetric Autler-Townes splitting in EIT. Prior to the digital test, we have studied the RF-receiving quality versus the physical ambiance and found that a choice of linear gain response to the RF-amplitude can suppress the signal distortion and the modulating signal is able to be decoded as fast as up to 500 kHz in the tunable bandwidth. Our checkout consolidates the physical foundation for a reliable communication and spectrum sensing over the broadband RF-carrier.
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