Ultrafast transition between exciton phases in van der Waals heterostructures
arXiv:1910.03890 · doi:10.1038/s41563-019-0337-0
Abstract
Heterostructures of atomically thin van der Waals bonded monolayers have opened a unique platform to engineer Coulomb correlations, shaping excitonic, Mott insulating, or superconducting phases. In transition metal dichalcogenide heterostructures, electrons and holes residing in different monolayers can bind into spatially indirect excitons with a strong potential for optoelectronics, valleytronics, Bose condensation, superfluidity, and moiré-induced nanodot lattices. Yet these ideas require a microscopic understanding of the formation, dissociation, and thermalization dynamics of correlations including ultrafast phase transitions. Here we introduce a direct ultrafast access to Coulomb correlations between monolayers; phase-locked mid-infrared pulses allow us to measure the binding energy of interlayer excitons in WSe2/WS2 hetero-bilayers by revealing a novel 1s-2p resonance, explained by a fully quantum mechanical model. Furthermore, we trace, with subcycle time resolution, the transformation of an exciton gas photogenerated in the WSe2 layer directly into interlayer excitons. Depending on the stacking angle, intra- and interlayer species coexist on picosecond scales and the 1s-2p resonance becomes renormalized. Our work provides a direct measurement of the binding energy of interlayer excitons and opens the possibility to trace and control correlations in novel artificial materials.
This is a post-peer-review, pre-copyedit version of an article published in Nature Materials. The final authenticated version is available online at https://doi.org/10.1038/s41563-019-0337-0
References in corpus (9)
- Ultrafast Charge Transfer in Atomically Thin MoS2/WS2 Heterostructures
- Observation of giant bandgap renormalization and excitonic effects in a monolayer transition metal dichalcogenide semiconductor
- Observation of Long-Lived Interlayer Excitons in Monolayer MoSe2-WSe2 Heterostructures
- Emergence of Superlattice Dirac Points in Graphene on Hexagonal Boron Nitride
- k.p theory for two-dimensional transition metal dichalcogenide semiconductors
- Moiré excitons: from programmable quantum emitter arrays to spin-orbit coupled artificial lattices
- High-temperature superfluidity with indirect excitons in van der Waals heterostructures
- Interlayer Exciton Optoelectronics in a 2D Heterostructure p-n Junction
- Probing the inter-layer exciton physics in a MoS/MoSe/MoS van der Waals heterostructure
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- Intrinsic Lifetime of Higher Excitonic States in Tungsten Diselenide Monolayers
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- Electrical tuning of moiré excitons in MoSe bilayers
- Dark exciton-exciton annihilation in monolayer WSe
- Dominating Interlayer Resonant Energy Transfer in Type-II 2D Heterostructure
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- Microscopic origin of anomalous interlayer exciton transport in van der Waals heterostructures
- A room-temperature moiré interlayer exciton laser
- Coherent exciton-exciton interactions and exciton dynamics in a MoSe\textsubscript{2}/WSe\textsubscript{2} heterostructure
- Extended spatial coherence of interlayer excitons in MoSe/WSe heterobilayers
- In-plane anisotropy in biaxial ReS2 crystals probed by nano-optical imaging of waveguide modes
- Bosonic Delocalization of Dipolar Moiré Excitons
- Exciton-exciton interactions in van der Waals heterobilayers
- Ultrafast phonon-driven charge transfer in van der Waals heterostructures
- Probing correlations in the exciton landscape of a moiré heterostructure
- Dynamical screening effects of substrate phonons on two-dimensional excitons
- Van der Waals Nanoantennas on Gold as Hosts for Hybrid Mie-Plasmonic Resonances
- Electrically tunable dipolar interactions between layer-hybridized excitons
- High-harmonic spectroscopy of strongly bound excitons in solids
- Impact of atomic reconstruction on optical spectra of twisted TMD homobilayers
- Quadrupolar Excitons in MoSe Bilayers
- Spatiotemporal dynamics of moiré excitons in van der Waals heterostructures
- Probing excitons with time-resolved momentum microscopy
- Optical Signatures of Moiré Trapped Biexcitons
- Tunable Excitons in Rhombohedral Trilayer Graphene
- Excitonic thermalization bottleneck in twisted TMD heterostructures
- Interlayer exciton polaritons in homobilayers of transition metal dichalcogenides
- Trapping Interlayer Excitons in van der Waals Heterostructures by Potential Arrays
- Probing the formation of dark interlayer excitons via ultrafast photocurrent
- Two dimensional semiconductors: optical and electronic properties
- Third-order polarizability of interlayer excitons in hetero-bilayers
- Electrically tunable MoSe/WSe heterostructure-based quantum dot
- Wannier Excitons Confined in Hexagonal Boron Nitride Triangular Quantum Dots
- Engineering topological exciton structures in two-dimensional semiconductors by a periodic electrostatic potential
- Effect of spin-dependent tunneling and intervalley scattering in magnetic-semiconductor van der Waals heterostructures on exciton and trion polarization
- Contribution to Excitonic Linewidth from Free Carrier-Exciton Scattering in Layered Materials: The example of h-BN
- Strain-induced exciton mobility in layered WS2 from first principles
- Optical excitations in nanographenes from the Bethe-Salpeter equation and time-dependent density functional theory: absorption spectra and spatial descriptors