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From the 1 of 9 linked papers with an AI index.

most citedCoherence enhancement of Rydberg polaritons

1 citations · 1 across the 2 of their papers we have counts for

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9 papers

quant-ph2026

Rydberg-Mediated Nonlinear Quantum Optics

Yun-Hui He, Chang-Cheng Li, Xu Shen +5

Rydberg atoms have emerged as a versatile platform for quantum optics due to their exaggerated properties, particularly their strong long-range interactions, which enable a new reg…

physics.atom-ph20261 cited

Coherence enhancement of Rydberg polaritons

Xiao-Feng Shi, Yan Lu, Yuechun Jiao +1

The paper proposes protocols that let stored Rydberg polaritons retain their phase by compensating motional dephasing, effectively extending their coherence time for quantum nonlin…

quant-ph2026

Accelerated Rydberg electromagnetically induced transparency quantum memory via shortcuts to adiabaticity

Y. Wei, Changcheng Li, Y. M. Liu +3

Electromagnetically induced transparency (EIT) enables coherent light-matter storage, forming the basis of photonic quantum memories that are essential for scalable quantum network…

quant-ph2026

Reciprocal Floquet thermalization in one-dimensional Rydberg atom array

Yunhui He, Yuechun Jiao, Jianming Zhao +1

Periodically driven Floquet quantum systems hold great promise for engineering exotic quantum phases and matter, but are often limited by rapid thermalization. In this work, we pro…

physics.atom-ph2026

Recent advances in Ultralong-range Rydberg molecules

Jingxu Bai, Yuechun Jiao, Xiao-Qiang Shao +2

Rydberg molecule, formed by one or more Rydberg atoms, exhibits remarkable properties, including an exceptionally large spatial extent, rich rovibrational level structures, permane…

quant-ph2025

Arbitrary Instantaneous Bandwidth Microwave Receiver via Scalable Rydberg Vapor Cell Array with Stark Comb

Yuechun Jiao, Yuwen Yin, Yunhui He +7

Rydberg atoms have great potential for microwave (MW) measurements due to their high sensitivity, broad carrier bandwidth, and traceability. However, the narrow instantaneous bandw…