Quantum Brain
← Back to papers

One-step preparation of 3D Bell and 3D GHZ states with Rydberg atoms

Jiping Wang, Huapeng Liu·November 4, 2025·DOI: 10.1088/1361-6455/ae1536
Quantum Physics

AI Breakdown

Get a structured breakdown of this paper — what it's about, the core idea, and key takeaways for the field.

Abstract

Three-dimensional Bell states and GHZ states serve as representative examples of high-dimensional entangled states. In this paper, we propose a scheme for generating three-dimensional Bell and GHZ entangled states using Rydberg atoms. By leveraging Rydberg-mediated interactions and introducing detuning, the system is effectively simplified into a chain-like configuration. To design effective couplings, we employ a centrosymmetric Gaussian distribution and optimize the relevant parameters. Furthermore, we take into account decoherence factors including atomic spontaneous emission, dephasing effects and random noise. Numerical simulations indicate that the proposed scheme can achieve high fidelity.

Related Research

Quantum Intelligence

Ask about quantum research, companies, or market developments.