collaborators

5 papers

physics.atom-ph2025

High-Resolution Quantum Sensing with Rydberg Atomic Receiver: Principles, Experiments and Future Prospects

Minze Chen, Tianqi Mao, Zhiao Zhu +6

Quantum sensing using Rydberg atoms offers unprecedented opportunities for next-generation radar systems, transcending classical limitations in miniaturization and spectral agility…

quant-ph2025

New Paradigm for Integrated Sensing and Communication with Rydberg Atomic Receiver

Minze Chen, Tianqi Mao, Yang Zhao +5

The RYDberg Atomic Receiver (RYDAR) has been demonstrated to surmount the limitation on both the sensitivity and operating bandwidth of the classical electronic counterpart, which…

eess.SP2025

Toward Near-Space Communication Network in the 6G and Beyond Era

Xinhua Liu, Zhen Gao, Ziwei Wan +6

Near-space communication network (NS-ComNet), as an indispensable component of sixth-generation (6G) and beyond mobile communication systems and the space-air-ground-sea integrated…

cs.IT2025

Rydberg Atomic Receivers for Multi-Band Communications and Sensing

Mingyao Cui, Qunsong Zeng, Minze Chen +4

Harnessing multi-level electron transitions, Rydberg Atomic REceivers (RAREs) can detect wireless signals across a wide range of frequency bands, from Megahertz to Terahertz. This…

physics.ins-det2025

Calibration-free Rydberg Atomic Receiver for Sub-MHz Wireless Communications and Sensing

Minze Chen, Tianqi Mao, Wei Xiao +7

The exploitation of sub-MHz (\textless 1 MHz) can be beneficial for a plethora of applications like underwater vehicular communication, subsurface exploration, low-frequency naviga…