AC-Stark Spectroscopy of Interactions between Moiré Excitons and Polarons

Fuente: arXiv
Gespeichert in:
Bibliographische Detailangaben
Hauptverfasser: Evrard, B., Adlong, H. S., Ghita, A. A., Uto, T., Ciorciaro, L., Watanabe, K., Taniguchi, T., Kroner, M., İmamoğlu, A.
Format: Preprint
Veröffentlicht: 2024
Schlagworte:
Online-Zugang:
Tags: Tag hinzufügen
Keine Tags, Fügen Sie den ersten Tag hinzu!
_version_ 1866912403971637248
author Evrard, B.
Adlong, H. S.
Ghita, A. A.
Uto, T.
Ciorciaro, L.
Watanabe, K.
Taniguchi, T.
Kroner, M.
İmamoğlu, A.
author_facet Evrard, B.
Adlong, H. S.
Ghita, A. A.
Uto, T.
Ciorciaro, L.
Watanabe, K.
Taniguchi, T.
Kroner, M.
İmamoğlu, A.
contents We use nonlinear pump-probe spectroscopy to study optical excitations in a charge-tunable MoSe$_2$\WS$_2$ moiré heterostructure. An intense red-detuned laser pulse creates a photonic dressing of the material by introducing a large virtual population of excitons or exciton polarons in a deep moiré potential. By measuring the resulting ac Stark effect with a weak resonant laser pulse, we gain access to the nature and mutual interactions of the elementary optical excitations. At charge neutrality, our measurements reveal that different exciton resonances, associated with confinement of their center-of-mass motion in the moiré potential, have a significant spatial overlap. The resulting short-range interactions manifest themselves as a density-dependent blueshift for same-valley excitons and bound biexciton states for opposite-valley excitons. The attractive polaron resonance that appears upon injection of electrons into the heterostructure shows a contrasting behavior: Here, we observe an electron-density-independent light shift and a clear pump-power-dependent saturation. These features are equivalent to that of an ensemble of independent two-level emitters and indicate a breakdown of the Fermi-polaron picture for optical excitations of electrons subject to a strong moiré potential. Our work establishes an experimental approach to elucidate the elementary optical excitations of semiconductor moiré heterostructures, providing a solid ground for the spectroscopy of correlated electronic and excitonic states in such materials.
format Preprint
id arxiv_https___arxiv_org_abs_2402_16630
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle AC-Stark Spectroscopy of Interactions between Moiré Excitons and Polarons
Evrard, B.
Adlong, H. S.
Ghita, A. A.
Uto, T.
Ciorciaro, L.
Watanabe, K.
Taniguchi, T.
Kroner, M.
İmamoğlu, A.
Strongly Correlated Electrons
Optics
Quantum Physics
We use nonlinear pump-probe spectroscopy to study optical excitations in a charge-tunable MoSe$_2$\WS$_2$ moiré heterostructure. An intense red-detuned laser pulse creates a photonic dressing of the material by introducing a large virtual population of excitons or exciton polarons in a deep moiré potential. By measuring the resulting ac Stark effect with a weak resonant laser pulse, we gain access to the nature and mutual interactions of the elementary optical excitations. At charge neutrality, our measurements reveal that different exciton resonances, associated with confinement of their center-of-mass motion in the moiré potential, have a significant spatial overlap. The resulting short-range interactions manifest themselves as a density-dependent blueshift for same-valley excitons and bound biexciton states for opposite-valley excitons. The attractive polaron resonance that appears upon injection of electrons into the heterostructure shows a contrasting behavior: Here, we observe an electron-density-independent light shift and a clear pump-power-dependent saturation. These features are equivalent to that of an ensemble of independent two-level emitters and indicate a breakdown of the Fermi-polaron picture for optical excitations of electrons subject to a strong moiré potential. Our work establishes an experimental approach to elucidate the elementary optical excitations of semiconductor moiré heterostructures, providing a solid ground for the spectroscopy of correlated electronic and excitonic states in such materials.
title AC-Stark Spectroscopy of Interactions between Moiré Excitons and Polarons
topic Strongly Correlated Electrons
Optics
Quantum Physics
url https://arxiv.org/abs/2402.16630