Einstein-Podolsky-Rosen Steering in Three Coupled Harmonic Oscillators
Ayoub Ghaba, Radouan Hab Arrih, Elhoussine Atmani, and Abdallah Slaoui

TL;DR
This paper analytically investigates quantum steering in three coupled harmonic oscillators, revealing how excitations and system parameters influence steering properties and their directional and topological features.
Contribution
It provides the first analytical expressions for quantum steering in three coupled oscillators using a geometrical diagonalization and Wigner function approach.
Findings
Excitations significantly enhance quantum steering.
Ground state exhibits no steerable correlations.
Symmetric steering behavior observed among oscillators.
Abstract
Quantum steering is one of the most intriguing phenomena in quantum mechanics and is essential for understanding correlations in multi-body systems. Despite its importance, analytical results for coupled three-body oscillators remain scarce. In this work, we investigate this phenomenon through a geometrical diagonalization approach, which reduces the degrees of freedom associated with the system's steering properties. Specifically, we derive analytical expressions for quantum steering in all possible directions using the Wigner function framework, as it provides a complete description of the system's quantum state. Our results indicate that excitations significantly enhance quantum steering across the system; this stands in contrast to the ground state , which exhibits no steerable correlations. Furthermore, both the directionality and topology of these correlations are…
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Taxonomy
TopicsQuantum Mechanics and Non-Hermitian Physics · Mechanical and Optical Resonators · Quantum chaos and dynamical systems
