Strong quantum interaction between excitons bound by cavity photon exchange

Fuente: arXiv
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Main Authors: Oliveira, Miguel S., Ciuti, Cristiano
Format: Preprint
Published: 2025
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author Oliveira, Miguel S.
Ciuti, Cristiano
author_facet Oliveira, Miguel S.
Ciuti, Cristiano
contents We theoretically predict the interaction between polaritonic excitations arising from the coupling of a cavity photon mode with bound to continuum intersubband transitions in a doped quantum well. The resulting exciton bound by photon exchange, recently demonstrated experimentally, exhibits a binding energy that can be continuously tuned by varying the cavity frequency. We show that polariton-polariton interactions, originating from both Coulomb interactions and Pauli blocking, can be dramatically enhanced by reducing the exciton binding energy, thereby increasing the effective Bohr radius along the growth direction. This regime is reminiscent of Rydberg atoms, where weak binding leads to strong quantum interactions. Our predictions indicate that this physics can give rise to giant quantum optical nonlinearities in the mid and far infrared, a spectral region that remains largely unexplored in quantum optics and offers exciting opportunities for both fundamental studies and applications.
format Preprint
id arxiv_https___arxiv_org_abs_2510_24421
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Strong quantum interaction between excitons bound by cavity photon exchange
Oliveira, Miguel S.
Ciuti, Cristiano
Other Condensed Matter
Quantum Physics
We theoretically predict the interaction between polaritonic excitations arising from the coupling of a cavity photon mode with bound to continuum intersubband transitions in a doped quantum well. The resulting exciton bound by photon exchange, recently demonstrated experimentally, exhibits a binding energy that can be continuously tuned by varying the cavity frequency. We show that polariton-polariton interactions, originating from both Coulomb interactions and Pauli blocking, can be dramatically enhanced by reducing the exciton binding energy, thereby increasing the effective Bohr radius along the growth direction. This regime is reminiscent of Rydberg atoms, where weak binding leads to strong quantum interactions. Our predictions indicate that this physics can give rise to giant quantum optical nonlinearities in the mid and far infrared, a spectral region that remains largely unexplored in quantum optics and offers exciting opportunities for both fundamental studies and applications.
title Strong quantum interaction between excitons bound by cavity photon exchange
topic Other Condensed Matter
Quantum Physics
url https://arxiv.org/abs/2510.24421