Optical Signatures of Periodic Charge Distribution in a Mott-like Correlated Insulator State
Abstract
The elementary optical excitations in two-dimensional semiconductors hosting itinerant electrons are attractive and repulsive polarons—excitons that are dynamically screened by electrons. Exciton polarons have hitherto been studied in translationally invariant degenerate Fermi systems. Here, we show that periodic distribution of electrons breaks the excitonic translational invariance and leads to a direct optical signature in the exciton-polaron spectrum. Specifically, we demonstrate that new optical resonances appear due to spatially modulated interactions between excitons and electrons in an incompressible Mott-like correlated state. Our observations demonstrate that resonant optical spectroscopy provides an invaluable tool for studying strongly correlated states, such as Wigner crystals and density waves, where exciton-electron interactions are modified by the emergence of charge order. Show more
Permanent link
https://doi.org/10.3929/ethz-b-000483141Publication status
publishedExternal links
Journal / series
Physical Review XVolume
Pages / Article No.
Publisher
American Physical SocietyOrganisational unit
03636 - Imamoglu, Atac / Imamoglu, Atac
02205 - FIRST-Lab / FIRST Center for Micro- and Nanoscience
02205 - FIRST-Lab / FIRST Center for Micro- and Nanoscience
Funding
178909 - Quantum photonics using van der Waals heterostructures (SNF)
671000 - Interacting polaritons in two-dimensional electron systems (EC)
Related publications and datasets
Is supplemented by: https://doi.org/10.3929/ethz-b-000428029
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