activity
20242026
collaborators

10 papers

quant-ph2026

Squeezing enhanced nonreciprocal quantum correlations via Barnett effect

E. Kongkui Berinyuy, A. -H. Abdel-Aty, P. Djorwe +2

Cavity optomagnonic platforms offer a promising route for exploring quantum phenomena, particularly quantum correlations, which are vital resources for modern quantum technologies.…

quant-ph2025

Quantum phase synchronisation enhanced via Coulomb interaction in an optomechanical system

E. K. Berinyuy, P. Djorwé, J. -X. Peng +5

In this work, we investigate the dynamics of quantum synchronization in a four-mode optomechanical system, focusing on the influence of the Coulomb interaction between two mechanic…

quant-ph2025

Multi-path vector entanglement engineering via dark mode control in optomechanics

P. Djorwé, R. Altuijri, A. J. Almalki +2

We propose a scheme to generate multi-paths entanglement in an optomechanical system by exploiting polarized electromagnetic fields and dark mode control. Our system consists of tw…

quant-ph2025

Noise-tolerant tripartite entanglement and quantum coherence via saturation effects

P. Djorwé, J. -X. Peng, S. Adbel-Khalek +1

Engineering quantum resources that survive against environmental temperature is of great interest for modern quantum technologies. However, it is a tricky task to synthetize such q…

quant-ph2025

Quantum correlations in molecular cavity optomechanics

E. Kongkui Berinyuy, D. R. Kenigoule Massembele, P. Djorwe +3

Quantum correlations are interesting resources for modern quantum technologies such as quantum information processing, quantum communication, quantum teleportation, and quantum com…

quant-ph2025

Enhancing mechanical entanglement in molecular optomechanics

E Kongkui Berinyuy, C. Tchodimou, P. Djorwe +3

We propose a scheme for enhancing bipartite quantum entanglement in a double-cavity molecular optomechanical (McOM) system incorporating an intracavity optical parametric amplifier…