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Enhanced Ground-Satellite Direct Access via Onboard Rydberg Atomic Quantum Receivers

Published: October 20, 2025 | arXiv ID: 2510.17290v1

By: Qihao Peng , Tierui Gong , Zihang Song and more

Potential Business Impact:

New receiver makes satellites talk better.

Business Areas:
Satellite Communication Hardware

Ground-satellite links for 6G networks face critical challenges, including severe path loss, tight size-weight-power limits, and congested spectrum, all of which significantly hinder the performance of traditional radio frequency (RF) front ends. This article introduces the Rydberg Atomic Quantum Receiver (RAQR) for onboard satellite systems, a millimeter-scale front end that converts radio fields to optical signals through atomic electromagnetically induced transparency. RAQR's high sensitivity and high frequency selectivity address link budget, payload, and interference challenges while fitting within space constraints. A hybrid atomic-electronic design and supporting signal model demonstrate enhanced data rate, coverage, and sensing accuracy relative to conventional RF receivers. The article concludes with integration strategies, distributed-satellite concepts, and open research problems for bringing RAQR-enabled satellite payloads into service.

Country of Origin
πŸ‡ΈπŸ‡¬ πŸ‡¬πŸ‡§ πŸ‡¦πŸ‡Ί Singapore, United Kingdom, Australia

Page Count
8 pages

Category
Electrical Engineering and Systems Science:
Systems and Control