Imaging strain-localized exciton states in nanoscale bubbles in monolayer WSe2 at room temperature
arXiv:2003.01789 · doi:10.1038/s41565-020-0730-5
Abstract
In monolayer transition metal dichalcogenides, quantum emitters are associated with localized strain that can be deterministically applied to create designer nano-arrays of single photon sources. Despite an overwhelming empirical correlation with local strain, the nanoscale interplay between strain, excitons, defects and local crystalline structure that gives rise to these quantum emitters is poorly understood. Here, we combine room-temperature nano-optical imaging and spectroscopy of excitons in nanobubbles of localized strain in monolayer WSe2 with atomistic structural models to elucidate how strain induces nanoscale confinement potentials that give rise to highly localized exciton states in 2D semiconductors. Nano-optical imaging of nanobubbles in low-defect monolayers reveal localized excitons on length scales of approximately 10 nm at multiple sites along the periphery of individual nanobubbles, which is in stark contrast to predictions of continuum models of strain. These results agree with theoretical confinement potentials that are atomistically derived from measured topographies of existing nanobubbles. Our results provide one-of-a-kind experimental and theoretical insight of how strain-induced confinement - without crystalline defects - can efficiently localize excitons on length scales commensurate with exciton size, providing key nanoscale structure-property information for quantum emitter phenomena in monolayer WSe2.
18 pages, 4 figures
References in corpus (7)
- Observation of Moiré Excitons in WSe2/WS2 Heterostructure Superlattices
- Cross-sectional imaging of individual layers and buried interfaces of graphene-based heterostructures and superlattices
- Resonantly hybridised excitons in moiré superlattices in van der Waals heterostructures
- Band Gap Engineering with Ultralarge Biaxial Strains in Suspended Monolayer MoS2
- Strained bubbles in van der Waals heterostructures as local emitters of photoluminescence with adjustable wavelength
- Optically discriminating carrier-induced quasiparticle band gap and exciton energy renormalization in monolayer MoS2
- Quantum-dot-like states in molybdenum disulfide nanostructures due to the interplay of local surface wrinkling, strain, and dielectric confinement
Cited by in corpus (41)
- Irradiation of Nanostrained Monolayer WSe for Site-Controlled Single-Photon Emission up to 150 K
- Exciton-Photonics: From Fundamental Science to Applications
- Guide to optical spectroscopy of layered semiconductors
- Exciton optics, dynamics and transport in atomically thin semiconductors
- Roadmap for Photonics with 2D Materials
- Photoluminescence imaging of single photon emitters within nanoscale strain profiles in monolayer WSe
- High Density, Localized Quantum Emitters in Strained 2D Semiconductors
- Nanoscale modification of WS trion emission by its local electromagnetic environment
- Two-dimensional crystals on adhesive substrates subjected to uniform transverse pressure
- Exciton spectroscopy and diffusion in MoSe2-WSe2 lateral heterostructures encapsulated in hexagonal boron nitride
- Dark-exciton driven energy funneling into dielectric inhomogeneities in two-dimensional semiconductors
- Tip-induced excitonic luminescence nanoscopy of an atomically-resolved van der Waals heterostructure
- Ultra Localized Optoelectronic Properties of Nanobubbles in 2D Semiconductors
- Extrinsic localized excitons in patterned 2D semiconductors
- Mobility enhancement in CVD-grown monolayer MoS2 via patterned substrate induced non-uniform straining
- Optical properties of exciton in two-dimensional transition metal dichalcogenide nanobubbles
- Direct Nano-Imaging of Light-Matter Interactions in Nanoscale Excitonic Emitters
- Bound excitons and bandgap engineering in violet phosphorus
- Engineering robust strain transmission in van der Waals heterostructure devices
- Nonlinear exciton drift in piezoelectric two-dimensional materials
- Creation and Microscopic Origins of Single-Photon Emitters in Transition Metal Dichalcogenides and Hexagonal Boron Nitride
- Single-molecule-resolution ultrafast near-field optical microscopy via plasmon lifetime extension
- Proximity-enhanced valley Zeeman splitting at the WS/graphene interface
- Curvature-enhanced localised emission from dark states in wrinkled monolayer WSe2 at room temperature
- Trapping Interlayer Excitons in van der Waals Heterostructures by Potential Arrays
- Single exciton trapping in an electrostatically defined 2D semiconductor quantum dot
- Electron dynamics in a 2D nanobubble: A two-level system based on spatial density
- Quantum Confined Luminescence in Two dimensions
- Phonon-mediated exciton capture in Mo-based transition metal dichalcogenides
- Giant moire trapping of excitons in twisted hBN
- Van der Waals waveguide quantum electrodynamics probed by infrared nano-photoluminescence
- First-principles computational methods for quantum defects in two-dimensional materials: A perspective
- Ultra-Sensitive Extinction Measurements of Optically Active Defects in Monolayer MoS
- Symmetric Domain Segmentation in WS2 Flakes: Correlating spatially resolved photoluminescence, conductance with valley polarization
- Geometrical properties of strained and twisted moiré heterostructures
- Extremely high excitonic -factors in 2D crystals by alloy-induced admixing of band states
- Cryogenic Nano-Imaging of Excitons in a Monolayer Semiconductor
- Polariton transport in 2D semiconductors: Phonon-mediated transitions between ballistic, superdiffusive and exciton-limited regimes
- Effects of Strain-Induced Pseudogauge Fields on Exciton Dispersion, Transport, and Interactions in Transition Metal Dichalcogenides Nanoribbons
- Uniform Narrow Excitonic Spectrum in Large-Area Suspended WSe2 Monolayers
- Sub-diffraction-resolved spatial distribution of emitting excitons in STM-induced luminescence of 2D semiconductors via Richardson-Lucy deconvolution