A warm Rydberg atom-based quadrature amplitude-modulated receiver

Fuente: arXiv
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Hauptverfasser: Nowosielski, Jan, Jastrzębski, Marcin, Halavach, Pavel, Łukanowski, Karol, Jarzyna, Marcin, Mazelanik, Mateusz, Wasilewski, Wojciech, Parniak, Michał
Format: Preprint
Veröffentlicht: 2024
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author Nowosielski, Jan
Jastrzębski, Marcin
Halavach, Pavel
Łukanowski, Karol
Jarzyna, Marcin
Mazelanik, Mateusz
Wasilewski, Wojciech
Parniak, Michał
author_facet Nowosielski, Jan
Jastrzębski, Marcin
Halavach, Pavel
Łukanowski, Karol
Jarzyna, Marcin
Mazelanik, Mateusz
Wasilewski, Wojciech
Parniak, Michał
contents Rydberg atoms exhibit remarkable sensitivity to electromagnetic fields, making them promising candidates for revolutionizing field sensors. Unlike conventional antennas, they neither disturb the measured field nor necessitate intricate calibration procedures. In this study, we propose a protocol for signal reception near the 2.4 GHz Wi-Fi frequency band, harnessing the capabilities of warm Rydberg atoms. Our focus lies on exploring various quadrature amplitude modulations and transmission frequencies through heterodyne detection. We offer a comprehensive characterization of our setup, encompassing the atomic response frequency range and attainable electric field amplitudes. Additionally, we delve into analyzing communication errors using Voronoi diagrams, along with evaluating the communication channel capacity across different modulation schemes. Our findings not only lay the groundwork for future wireless communication applications, but also present opportunities to refine protocols in classical communication and field sensing domains.
format Preprint
id arxiv_https___arxiv_org_abs_2405_02901
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle A warm Rydberg atom-based quadrature amplitude-modulated receiver
Nowosielski, Jan
Jastrzębski, Marcin
Halavach, Pavel
Łukanowski, Karol
Jarzyna, Marcin
Mazelanik, Mateusz
Wasilewski, Wojciech
Parniak, Michał
Atomic Physics
Optics
Quantum Physics
Rydberg atoms exhibit remarkable sensitivity to electromagnetic fields, making them promising candidates for revolutionizing field sensors. Unlike conventional antennas, they neither disturb the measured field nor necessitate intricate calibration procedures. In this study, we propose a protocol for signal reception near the 2.4 GHz Wi-Fi frequency band, harnessing the capabilities of warm Rydberg atoms. Our focus lies on exploring various quadrature amplitude modulations and transmission frequencies through heterodyne detection. We offer a comprehensive characterization of our setup, encompassing the atomic response frequency range and attainable electric field amplitudes. Additionally, we delve into analyzing communication errors using Voronoi diagrams, along with evaluating the communication channel capacity across different modulation schemes. Our findings not only lay the groundwork for future wireless communication applications, but also present opportunities to refine protocols in classical communication and field sensing domains.
title A warm Rydberg atom-based quadrature amplitude-modulated receiver
topic Atomic Physics
Optics
Quantum Physics
url https://arxiv.org/abs/2405.02901