Robust polaritons in magnetic monolayers of CrI3

Fuente: arXiv
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Autori principali: Zhumagulov, Yaroslav V., Chiavazzo, Salvatore, Shelykh, Ivan A., Kyriienko, Oleksandr
Natura: Preprint
Pubblicazione: 2022
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author Zhumagulov, Yaroslav V.
Chiavazzo, Salvatore
Shelykh, Ivan A.
Kyriienko, Oleksandr
author_facet Zhumagulov, Yaroslav V.
Chiavazzo, Salvatore
Shelykh, Ivan A.
Kyriienko, Oleksandr
contents We show that the regime of strong-light matter coupling with remarkable magnetic properties can be realized in systems based on monolayers of chromium triiodide (CrI3). This two-dimensional material combines the presence of ferromagnetic ordering with the possibility of forming strongly-bound excitonic complexes even at room temperature. Using microscopic first-principle calculations we reveal a rich spectrum of optical transitions, corresponding to both Wannier- and Frenkel-type excitons, including those containing electrons with a negative effective mass. We show that excitons of different polarizations efficiently hybridize with a photonic mode of a planar microcavity, and due to the peculiar selection rules polariton modes become well resolved in circular polarizations. The combination of very strong optical oscillator strength of excitons and cavity confinement leads to large values of the Rabi splitting, reaching 35 meV for a single monolayer, and giant Zeeman splitting between polariton modes of up to 20 meV. This makes CrI3 an excellent platform for magnetopolaritonic applications.
format Preprint
id arxiv_https___arxiv_org_abs_2208_12228
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Robust polaritons in magnetic monolayers of CrI3
Zhumagulov, Yaroslav V.
Chiavazzo, Salvatore
Shelykh, Ivan A.
Kyriienko, Oleksandr
Mesoscale and Nanoscale Physics
Materials Science
We show that the regime of strong-light matter coupling with remarkable magnetic properties can be realized in systems based on monolayers of chromium triiodide (CrI3). This two-dimensional material combines the presence of ferromagnetic ordering with the possibility of forming strongly-bound excitonic complexes even at room temperature. Using microscopic first-principle calculations we reveal a rich spectrum of optical transitions, corresponding to both Wannier- and Frenkel-type excitons, including those containing electrons with a negative effective mass. We show that excitons of different polarizations efficiently hybridize with a photonic mode of a planar microcavity, and due to the peculiar selection rules polariton modes become well resolved in circular polarizations. The combination of very strong optical oscillator strength of excitons and cavity confinement leads to large values of the Rabi splitting, reaching 35 meV for a single monolayer, and giant Zeeman splitting between polariton modes of up to 20 meV. This makes CrI3 an excellent platform for magnetopolaritonic applications.
title Robust polaritons in magnetic monolayers of CrI3
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2208.12228