collaborators

6 papers

quant-ph2026

Stochastic Liouville-transport theory of light-atom interaction noise in thermal atomic vapors

Shaoxin Yuan, Bin Wu, Mingyong Jing +11

Atom-light interaction noise can limit thermal-vapor sensing. Existing theories often treat internal-state dynamics, finite-mode atomic motion, and stochastic renewal separately, o…

quant-ph2026

Time series learning in a many-body Rydberg system with emergent collective amplification

Zongkai Liu, Qiming Ren, Chris Nill +12

Interacting Rydberg atoms constitute a versatile platform for the realization of non-equilibrium states of matter. Close to phase transitions, they respond collectively to external…

quant-ph2026

Self-Supervised Learning with Noisy Dataset for Rydberg Microwave Sensors Denoising

Zongkai Liu, Qiming Ren, Wenguang Yang +11

We report a self-supervised deep learning framework for Rydberg sensors that enables single-shot noise suppression matching the accuracy of multi-measurement averaging. The framewo…

quant-ph2025

Reactive near-field subwavelength microwave imaging with a non-invasive Rydberg probe

Chaoyang Hu, Mingyong Jing, Zongkai Liu +10

Non-invasive microwave field imaging--accurately mapping field distributions without perturbing them--is essential in areas such as aerospace engineering, biomedical imaging and in…

physics.atom-ph2025

Time delay of mean field interaction in thermal Rydberg atomic gas

Yuzhuo Wang, Tianxiong Gao, Yufan Niu +5

Mean field theory is commonly employed to study nonequilibrium dynamics in hot Rydberg atomic ensembles, but the fundamental mechanism behind the generation of the mean-field inter…

quant-ph2025

Microwave-coupled optical bistability in driven and interacting Rydberg gases

Zhehua Zhang, Zeyan Zhang, Shaoxing Han +11

Nonequilibrium dynamics are closely related to various fields of research, in which vastly different phases emerge when parameters are changed. However, it is difficult to construc…