Rydberg Atomic Quantum Receivers for the Multi-User MIMO Uplink

Fuente: arXiv
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Main Authors: Gong, Tierui, Yuen, Chau, See, Chong Meng Samson, Debbah, Mérouane, Hanzo, Lajos
Format: Preprint
Published: 2025
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author Gong, Tierui
Yuen, Chau
See, Chong Meng Samson
Debbah, Mérouane
Hanzo, Lajos
author_facet Gong, Tierui
Yuen, Chau
See, Chong Meng Samson
Debbah, Mérouane
Hanzo, Lajos
contents Rydberg atomic quantum receivers exhibit great potential in assisting classical wireless communications due to their outstanding advantages in detecting radio frequency signals. To realize this potential, we integrate a Rydberg atomic quantum receiver into a classical multi-user multiple-input multiple-output (MIMO) scheme to form a multi-user Rydberg atomic quantum MIMO (RAQ-MIMO) system for the uplink. To study this system, we first construct an equivalent baseband signal model, which facilitates convenient system design, signal processing and optimizations. We then study the ergodic achievable rates under both the maximum ratio combining (MRC) and zero-forcing (ZF) schemes by deriving their tight lower bounds. We next compare the ergodic achievable rates of the RAQ-MIMO and the conventional massive MIMO schemes by offering a closed-form expression for the difference of their ergodic achievable rates, which allows us to directly compare the two systems. Our results show that RAQ-MIMO allows the average transmit power of users to be $> 25$ dBm lower than that of the conventional massive MIMO. Viewed from a different perspective, an extra $\sim 8.8$ bits/s/Hz/user rate becomes achievable by ZF RAQ-MIMO.
format Preprint
id arxiv_https___arxiv_org_abs_2501_18382
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Rydberg Atomic Quantum Receivers for the Multi-User MIMO Uplink
Gong, Tierui
Yuen, Chau
See, Chong Meng Samson
Debbah, Mérouane
Hanzo, Lajos
Signal Processing
Information Theory
Rydberg atomic quantum receivers exhibit great potential in assisting classical wireless communications due to their outstanding advantages in detecting radio frequency signals. To realize this potential, we integrate a Rydberg atomic quantum receiver into a classical multi-user multiple-input multiple-output (MIMO) scheme to form a multi-user Rydberg atomic quantum MIMO (RAQ-MIMO) system for the uplink. To study this system, we first construct an equivalent baseband signal model, which facilitates convenient system design, signal processing and optimizations. We then study the ergodic achievable rates under both the maximum ratio combining (MRC) and zero-forcing (ZF) schemes by deriving their tight lower bounds. We next compare the ergodic achievable rates of the RAQ-MIMO and the conventional massive MIMO schemes by offering a closed-form expression for the difference of their ergodic achievable rates, which allows us to directly compare the two systems. Our results show that RAQ-MIMO allows the average transmit power of users to be $> 25$ dBm lower than that of the conventional massive MIMO. Viewed from a different perspective, an extra $\sim 8.8$ bits/s/Hz/user rate becomes achievable by ZF RAQ-MIMO.
title Rydberg Atomic Quantum Receivers for the Multi-User MIMO Uplink
topic Signal Processing
Information Theory
url https://arxiv.org/abs/2501.18382