collaborators

14 papers

eess.SP2026

Unified Analytical Model for Atomic Receivers Under Typical Quantum Interference Paths

Yiyue Xiang, Neng Ye, Qihao Peng +2

Atomic receivers, which leverage the quantum interference termed electromagnetically induced transparency (EIT) for radio-frequency (RF) to optical signal transduction, offer a rev…

eess.SP2026

Rydberg Atomic Quantum Radio: A Comprehensive Survey From Wireless Communication Perspective

Yiyue Xiang, Neng Ye, Qihao Peng +5

Next-generation space-air-ground-sea integrated networks (SAGSIN) impose unprecedented demands on advanced radio frequency (RF) receivers for full-spectrum agility, ultra-high sens…

eess.SP2026

Cell-Level Channel Shaping for Rydberg Atomic Quantum Receivers in Satellite Uplinks With Doppler-Enabled Superheterodyne Reception

Qihao Peng, Qu Luo, Kezhi Wang +4

In this paper, we propose a self-superheterodyne Rydberg uniform array receiver for satellite uplink communications, in which the Doppler shift naturally induced by satellite motio…

eess.SP2026

Frame-Based AFDM-ISAC Waveform Design With Chirp-Enabled Pulse Compression

Qu Luo, Zilong Liu, Musavian Leila +3

This paper proposes an Affine frequency division multiplexing (AFDM)-empowered integrated sensing and communications (ISAC) design, referred to as AFDM-ISAC. We first design a nove…

eess.SP2026

Towards Standardizing Affine Frequency Division Multiplexing (AFDM) for Future Wireless Networks

Qu Luo, Lixia Xiao, Pei Xiao +6

Affine frequency division multiplexing~(AFDM) has emerged as a compelling waveform candidate for future wireless networks, owing to its strong resilience to doubly selective channe…

eess.SP2026

Beyond the RF Paradigm: Rydberg Atomic Receivers for Next-Generation IoT

Qihao Peng, Qu Luo, Dongnan Xia +11

Next-generation Internet-of-Things (IoT) is evolving toward a ubiquitous, ultra-low-power, and multi-band heterogeneous networking paradigm that seamlessly integrates terrestrial,…