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Main Author: Florez, H. M.
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2512.15051
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author Florez, H. M.
author_facet Florez, H. M.
contents Multipartite entanglement is an important resource for quantum information processing. It has been shown that it is possible to employ alkali atoms to implement single device multipartite entanglement by using nonlinear processes with spatial modes. This work presents the first microscopic description of such multi-mode generation with two-pump four wave mixing (4WM) in dense atomic media. We implement an extension of a double $Λ$ model for a single pump 4WM in order to describe the multi-mode generation with a two-pump configuration. We propose a Floquet expansion to solve the multimode gain amplification and noise properties. The model describes the angle and the two-photon dependency of the multimode generation and the quantum correlations among the modes. We investigate the entanglement properties of the system, describing the main properties of previous experimental observations. Such a microscopic description can be used to predict the gain distribution of modes and the quantum correlation within a typical range of experimental parameters.
format Preprint
id arxiv_https___arxiv_org_abs_2512_15051
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Microscopic model for a spatial multimode generation based on Multi-pump Four Wave Mixing in hot vapours
Florez, H. M.
Quantum Physics
Multipartite entanglement is an important resource for quantum information processing. It has been shown that it is possible to employ alkali atoms to implement single device multipartite entanglement by using nonlinear processes with spatial modes. This work presents the first microscopic description of such multi-mode generation with two-pump four wave mixing (4WM) in dense atomic media. We implement an extension of a double $Λ$ model for a single pump 4WM in order to describe the multi-mode generation with a two-pump configuration. We propose a Floquet expansion to solve the multimode gain amplification and noise properties. The model describes the angle and the two-photon dependency of the multimode generation and the quantum correlations among the modes. We investigate the entanglement properties of the system, describing the main properties of previous experimental observations. Such a microscopic description can be used to predict the gain distribution of modes and the quantum correlation within a typical range of experimental parameters.
title Microscopic model for a spatial multimode generation based on Multi-pump Four Wave Mixing in hot vapours
topic Quantum Physics
url https://arxiv.org/abs/2512.15051