Strongly-Correlated Electron-Photon Systems
arXiv:2306.07313 · doi:10.1038/s41586-022-04726-w
Abstract
An important goal of modern condensed matter physics involves the search for states of matter with new emergent properties and desirable functionalities. Although the tools for material design remain relatively limited, notable advances have been recently achieved by controlling interactions at hetero-interfaces, precise alignment of low-dimensional materials and the use of extreme pressures . Here, we highlight a new paradigm, based on controlling light-matter interactions, which provides a new way to manipulate and synthesize strongly correlated quantum matter. We consider the case in which both electron-electron and electron-photon interactions are strong and give rise to a variety of novel phenomena. Photon-mediated superconductivity, cavity-fractional quantum Hall physics and optically driven topological phenomena in low dimensions are amongst the frontiers discussed in this perspective, which puts a spotlight on a new field that we term here "strongly-correlated electron-photon science."
15 pages, 5 figures
References in corpus (14)
- Quantum fluids of light
- Photovoltaic Hall effect in graphene
- Observation of Superfluidity of Polaritons in Semiconductor Microcavities
- Moiré heterostructures as a condensed matter quantum simulator
- Terahertz-Field-Induced Ferroelectricity in Quantum Paraelectric SrTiO
- Metastable ferroelectricity in optically strained
- Out of equilibrium electrons and the Hall conductance of a Floquet topological insulator
- Valley-spin polarized Landau levels in a monolayer semiconductor
- Microscopic theory for the light-induced anomalous Hall effect in graphene
- Optically induced superconductivity in striped La2-xBaxCuO4 by polarization-selective excitation in the near infrared
- Proposed parametric cooling of bilayer cuprate superconductors by terahertz excitation
- Nonequilibrium enhancement of high-temperature superconductivity in a 3D model of cuprates
- The discovery, disappearance and re-emergence of radiation-stimulated superconductivity
- Engineering Quantum Hall Phases in Synthetic Bilayer Graphene System
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