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A weakly-interacting many-body system of Rydberg polaritons based on electromagnetically induced transparency

Physics

A weakly-interacting many-body system of Rydberg polaritons based on electromagnetically induced transparency

B. Kim, K. Chen, et al.

This groundbreaking research reveals a weakly-interacting many-body system of Rydberg polaritons, showcasing remarkable phase shifts and cooling effects due to dipole-dipole interactions. The findings, conducted by a talented team of researchers, open the door to the exciting possibility of polariton Bose-Einstein condensation.

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~3 min • Beginner • English
Abstract
The combination of Rydberg atoms and electromagnetically induced transparency (EIT) has been extensively studied in the strong-interaction regime. Here we proposed utilizing an EIT medium with a high optical depth (OD) and a Rydberg state of low principal quantum number to create a many-body system of Rydberg polaritons in the weak-interaction regime. The phase shift and attenuation induced by the dipole-dipole interaction (DDI) were still significant, and can be viewed as the consequences of elastic and inelastic collisions among Rydberg polaritons. We further observed that the width of the transverse momentum distribution of Rydberg polaritons at the exit of the system became notably smaller as compared with that at the entrance. The observation demonstrates the cooling effect in this system. The µs-long interaction time due to the high-OD EIT medium plus the µm²-size collision cross section due to the DDI suggests a feasible platform of polariton Bose-Einstein condensation.
Publisher
Communications Physics
Published On
May 20, 2021
Authors
Bongjune Kim, Ko-Tang Chen, Shih-Si Hsiao, Sheng-Yang Wang, Kai-Bo Li, Julius Ruseckas, Gediminas Juzeliūnas, Teodora Kirova, Marcis Auzinsh, Ying-Cheng Chen, Yong-Fan Chen, Ite A. Yu
Tags
Rydberg polaritons
electromagnetically induced transparency
dipole-dipole interactions
elastic collisions
Bose-Einstein condensation
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