Experimental observation of topological exciton-polaritons in transition metal dichalcogenide monolayers
arXiv:2009.11237 · doi:10.1038/s41467-021-24728-y
Abstract
The rise of quantum science and technologies motivates photonics research to seek new platforms with strong light-matter interactions to facilitate quantum behaviors at moderate light intensities. One promising platform to reach such strong light-matter interacting regimes is offered by polaritonic metasurfaces, which represent ultrathin artificial media structured on nano-scale and designed to support polaritons - half-light half-matter quasiparticles. Topological polaritons, or 'topolaritons', offer an ideal platform in this context, with unique properties stemming from topological phases of light strongly coupled with matter. Here we explore polaritonic metasurfaces based on 2D transition metal dichalcogenides (TMDs) supporting in-plane polarized exciton resonances as a promising platform for topological polaritonics. We enable a spin-Hall topolaritonic phase by strongly coupling valley polarized in-plane excitons in a TMD monolayer with a suitably engineered all-dielectric topological photonic metasurface. We first show that the strong coupling between topological photonic bands supported by the metasurface and excitonic bands in MoSe2 yields an effective phase winding and transition to a topolaritonic spin-Hall state. We then experimentally realize this phenomenon and confirm the presence of one-way spin-polarized edge topolaritons. Combined with the valley polarization in a MoSe2 monolayer, the proposed system enables a new approach to engage the photonic angular momentum and valley degree of freedom in TMDs, offering a promising platform for photonic/solid-state interfaces for valleytronics and spintronics.
31 page, 10 figures
References in corpus (14)
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Topological Photonics
- Scheme to Achieve Silicon Topological Photonics
- Strong light-matter coupling in two-dimensional atomic crystals
- Topological Polaritons
- Exciton Valley Dynamics probed by Kerr Rotation in WSe2 Monolayers
- Nanoscale chiral valley-photon interface through optical spin-orbit coupling
- Active topological photonics
- Polariton Topological Insulator
- Nonlinearity-induced photonic topological insulator
- Engineering spin-orbit coupling for photons and polaritons in microstructures
- Quantum interference of topological states of light
- Metasurface Integrated Monolayer Exciton Polariton
- Manipulation of edge states in microwave artificial graphene
Cited by in corpus (30)
- Topological photonic crystals: physics, designs and applications
- Enhanced Light-Matter Interaction in Two-Dimensional Transition Metal Dichalcogenides
- A brief review of topological photonics in one, two, and three dimensions
- Exciton optics, dynamics and transport in atomically thin semiconductors
- Topological photonics: fundamental concepts, recent developments, and future directions
- Chiral quantum optics: recent developments, and future directions
- Giant effective Zeeman splitting in a monolayer semiconductor realized by spin-selective strong light-matter coupling
- In-plane hyperbolic polariton tuners in terahertz and long-wave infrared regimes
- Absence of topological protection of the interface states in photonic crystals
- Chern Invariants of Topological Continua; a Self-Consistent Nonlocal Hydrodynamic Model
- Polaritonic Chern insulators in monolayer semiconductors
- Polaritonic Quantum Matter
- Polariton vortex Chern insulator
- 2D material exciton-polariton transport on 2D photonic crystals
- Dirac exciton-polariton condensates in photonic crystal gratings
- Chiral Flat-Band Optical Cavity with Atomically Thin Mirrors
- Realization of Z topological photonic insulators made from multilayer transition metal dichalcogenides
- Microscopic analysis of spin-momentum locking on a geometric phase metasurface
- Tunable Nanophotonic Devices and Cavities based on a Two-Dimensional Magnet
- Molecular and solid-state topological polaritons induced by population imbalance
- Polariton Chern Bands in 2D Photonic Crystals Beyond Dirac Cones
- Topologically tunable polaritons based on two-dimensional crystals in a photonic lattice
- Design of a room-temperature topological exciton-polariton laser in a ZnO/TiO-photonic crystal slab
- Discrete time crystal made of topological edge magnons
- Localized interfacial Phonon Modes at the Electronic Axion Domain Wall
- Spin-momentum locking breakdown on plasmonic metasurfaces
- Planar Bragg microcavities with monolayer WS for strong exciton-photon coupling
- Topological Magnon-Plasmon Hybrids
- Magnetically Tunable Chiral Phonon Polaritons with Magneto-optical Bound States in the Continuum
- Topological Photonics on a Small Scale