Spatiotemporal imaging of nonlinear optics in van der Waals waveguides
arXiv:2412.07640 · doi:10.1038/s41565-024-01849-1
Abstract
Van der Waals (vdW) semiconductors have emerged as promising platforms for efficient nonlinear optical conversion, including harmonic and entangled photon generation. Although major efforts are devoted to integrating vdW materials in nanoscale waveguides for miniaturization, the realization of efficient, phase-matched conversion in these platforms remains challenging. To address this challenge, we develop a far-field ultrafast imaging method to track the propagation of both fundamental and harmonic waves within vdW waveguides with extreme spatiotemporal resolution. Our approach allows systematic optimization of nonlinear conversion by determining the phase-matching angles, mode profiles, and losses in waveguides without a priori knowledge of material properties. We focus on light propagation in slab waveguides of rhombohedral-stacked MoS2, an emerging vdW semiconductor with giant nonlinear susceptibility. Our results reveal that these waveguides support birefringent phase-matching, demonstrating the material's potential for efficient on-chip nonlinear optics. This work establishes spatiotemporal imaging of light propagation in waveguides as an incisive and general method to identify new materials and architectures for efficient nonlinear nanophotonics.
References in corpus (13)
- Chip-based photon quantum state sources using nonlinear optics
- Ultrathin quantum light source enabled by a nonlinear van der Waals crystal with vanishing interlayer-electronic-coupling
- Observation of Temporal Reflections and Broadband Frequency Translations at Photonic Time-Interfaces
- Ellipticity dependence of high-harmonic generation in solids: unraveling the interplay between intraband and interband dynamics
- Ultrafast imaging of polariton propagation and interactions
- Towards compact phase-matched and waveguided nonlinear optics in atomically layered semiconductors
- Untargeted Effects in Organic Exciton-Polariton Transient Spectroscopy: A Cautionary Tale
- Dynamic Stark Effect in Strongly Coupled Microcavity Exciton-Polaritons
- Room temperature wavelike exciton transport in a van der Waals superatomic semiconductor
- Van der Waals heterostructure metasurfaces: atomic-layer assembly of ultrathin optical cavities
- Nonlinear spectroscopy of exciton-polaritons in a GaAs-based microcavity
- Combining ultrahigh index with exceptional nonlinearity in resonant transition metal dichalcogenide nanodisks
- Spectroscopic and Interferometric Sum-Frequency Imaging of Strongly Coupled Phonon Polaritons in SiC Metasurfaces
Cited by in corpus (6)
- Roadmap for Photonics with 2D Materials
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- Ultrafast all-optical switching in nonlinear 3R-MoS van der Waals metasurfaces
- Exciton Delocalization Suppresses Polariton Scattering
- Microscopic Theory of Polaron-Polariton Dispersion and Propagation
- Excitonic bound states in the continuum in van der Waals heterostructure metasurfaces