Tunable optical topological transitions of plasmon polaritons in WTe2 van der Waals films
arXiv:2210.07605 · doi:10.1038/s41377-023-01244-w
Abstract
Naturally existing in-plane hyperbolic polaritons and the associated optical topological transitions, which avoid the nano-structuring to achieve hyperbolicity, can outperform their counterparts in artificial metasurfaces. Such plasmon polaritons are rare, but experimentally revealed recently in WTe2 van der Waals thin films. Different from phonon polaritons, hyperbolic plasmon polaritons originate from the interplay of free carrier Drude response and interband transitions, which promise good intrinsic tunability. However, tunable in-plane hyperbolic plasmon polariton and its optical topological transition of the isofrequency contours to the elliptic topology in a natural material have not been realized. Here we demonstrate the tuning of the optical topological transition through Mo-doping and temperature. The optical topological transition energy is tuned over a wide range, with frequencies ranging from 429 cm-1 (23.3 microns) for pure WTe2 to 270 cm-1 (37.0 microns) at the 50% Mo-doping level at 10 K. Moreover, the temperature-induced blueshift of the optical topological transition energy is also revealed, enabling active and reversible tuning. Surprisingly, the localized surface plasmon resonance in skew ribbons shows unusual polarization dependence, accurately manifesting its topology, which renders a reliable means to track the topology with far-field techniques. Our results open an avenue for reconfigurable photonic devices capable of plasmon polariton steering, such as canaling, focusing and routing, and pave a way for low-symmetry plasmonic nanophotonics based on anisotropic natural materials.
References in corpus (12)
- Manipulating infrared photons using plasmons in transparent graphene superlattices
- Observation of topological polaritons and photonic magic angles in twisted van der Waals bi-layers
- Infrared hyperbolic metasurface based on nanostructured van der Waals materials
- Configure polaritons in twisted -MoO3
- Broad Spectral Tuning of Ultra-Low Loss Polaritons in a van der Waals Crystal by Intercalation
- Discovery of a new type of topological Weyl fermion semimetal state in MoWTe
- Engineering the structural and electronic phases of MoTe2 through W substitution
- Gate-tunable negative refraction of mid-infrared polaritons
- Doping-driven topological polaritons in graphene/α-MoO3 heterostructures
- Hybridized hyperbolic surface phonon polaritons at α-MoO3 and polar dielectric interfaces
- Enabling propagation of anisotropic polaritons along forbidden directions via a topological transition
- Tailoring topological transition of anisotropic polaritons by interface engineering in biaxial crystals