Strongly non-linear interaction between non-classical light and a blockaded Rydberg atomic ensemble

Fuente: arXiv
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Main Authors: Lowinski, Jan, Heller, Lukas, Hoffet, Félix, Padrón-Brito, Auxiliadora, Theophilo, Klara, de Riedmatten, Hugues
Format: Preprint
Published: 2023
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author Lowinski, Jan
Heller, Lukas
Hoffet, Félix
Padrón-Brito, Auxiliadora
Theophilo, Klara
de Riedmatten, Hugues
author_facet Lowinski, Jan
Heller, Lukas
Hoffet, Félix
Padrón-Brito, Auxiliadora
Theophilo, Klara
de Riedmatten, Hugues
contents We investigate the interaction between non-classical light with a tunable multiphoton component and a highly nonlinear medium based on cold Rydberg atoms. The non-classical field emitted by a DLCZ quantum memory is stored using Rydberg electromagnetically induced transparency, experiencing strong nonlinear response due to the dipole blockade. We show that the storage efficiency in the Rydberg ensemble decreases as function of the multiphoton strength of the input field, as a result of the nonlinearity. We also show that the autocorrelation function $g^{(2)}(0)$ of the retrieved field after storage in the Rydberg state is considerably reduced, leading to the first demonstration of single photon filtering with non-classical input light. Finally, we develop a simple simulation that allows us to model the effect of our medium on the input state. This work is a step towards matter-mediated photon-photon interactions with non-classical light.
format Preprint
id arxiv_https___arxiv_org_abs_2309_08257
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Strongly non-linear interaction between non-classical light and a blockaded Rydberg atomic ensemble
Lowinski, Jan
Heller, Lukas
Hoffet, Félix
Padrón-Brito, Auxiliadora
Theophilo, Klara
de Riedmatten, Hugues
Quantum Physics
We investigate the interaction between non-classical light with a tunable multiphoton component and a highly nonlinear medium based on cold Rydberg atoms. The non-classical field emitted by a DLCZ quantum memory is stored using Rydberg electromagnetically induced transparency, experiencing strong nonlinear response due to the dipole blockade. We show that the storage efficiency in the Rydberg ensemble decreases as function of the multiphoton strength of the input field, as a result of the nonlinearity. We also show that the autocorrelation function $g^{(2)}(0)$ of the retrieved field after storage in the Rydberg state is considerably reduced, leading to the first demonstration of single photon filtering with non-classical input light. Finally, we develop a simple simulation that allows us to model the effect of our medium on the input state. This work is a step towards matter-mediated photon-photon interactions with non-classical light.
title Strongly non-linear interaction between non-classical light and a blockaded Rydberg atomic ensemble
topic Quantum Physics
url https://arxiv.org/abs/2309.08257