collaborators

6 papers

quant-ph2026

Propagation dynamics of high-gain vortex beams in symmetry-broken media via forward and backward three-wave mixing

Fan Meng, Hao Zhu, Xin-Yao Huang +1

In recent years, vortex light, a distinctive form of structured light, has attracted considerable attention owing to its unique properties and the rich physical phenomena arising f…

quant-ph2026

Generation of vortex-squeezed light in a coherently prepared medium

Fan Meng, Hao Zhu, Xin-Yao Huang +1

In this Letter, we theoretically propose an alternative scheme for generating vortex optical squeezing, based on the Raman scattering process in a coherently prepared medium, disti…

quant-ph2026

Nonreciprocity of intense light field and weak quantum signal in optomechanical systems with three-mode parametric interactions

Yao Dong, Xin-Yao Huang, Guo-Feng Zhang

We demonstrate nonreciprocal optical transmission for both intense classical fields and weak quantum signals within a reconfigurable optomechanical platform driven by three-mode pa…

physics.optics2026

Transfer of Orbital Angular Momentum in Vortex Light through Four-Wave Mixing and the Manipulation of Slow and Fast Light

Fan Meng, Xin-Yao Huang, Guo-Feng Zhang

Vortex light, a unique optical field that carries orbital angular momentum (OAM), has attracted considerable attention in recent years. In this paper, we present a detailed theoret…

quant-ph2025

Continuous variable entanglement with orbital angular momentum multiplexing in coherently prepared media

Fan Meng, Hao Zhu, Xin-Yao Huang +1

Quantum entanglement constitutes a pivotal resource, serving as a fundamental cornerstone within the field of quantum information science. In recent years, the study of vortex ligh…

quant-ph2025

Enhanced Charging in Multi-Battery Systems by Nonreciprocity

Hua-Wei Zhao, Yong Xie, Xinyao Huang +1

Quantum batteries (QBs), harnessing quantum systems to transfer and store energy, have garnered substantial attention recently, enabling potentials in enhanced charging capacity, i…