Chiral Nonlinear Polaritonics with van der Waals Metasurfaces
Connor Heimig, Alexander A. Antonov, Dmytro Gryb, Thomas Possmayer, Thomas Weber, Michael Hirler, Jonas Biechteler, Luca Sortino, Leonardo de S. Menezes, Stefan A. Maier, Maxim V. Gorkunov, Yuri Kivshar, Andreas Tittl

TL;DR
This paper demonstrates a chiral van der Waals metasurface that enables selective formation of exciton-polaritons with specific handedness, allowing precise control of resonant wavelengths and revealing chiral nonlinear effects like third-harmonic generation.
Contribution
It introduces a novel chiral TMDC metasurface with high chirality retention at oblique angles, advancing the field of chiral polaritonics and nonlinear photonics.
Findings
Maximal chirality maintained up to 20° incidence angle.
Angle of incidence used as a tuning parameter for resonant wavelength.
Observation of polariton-driven chiral third-harmonic generation.
Abstract
In the strong-coupling regime, the interaction between light and matter reaches a hybridization state where the photonic and material components are inseparably linked. Using tailored states of light to break symmetries in such systems can facilitate the development of novel non-equilibrium quantum materials. Chiral optical cavities offer a promising approach for this, enabling either temporal or spatial symmetry-breaking, both of which are unachievable with conventional mirror cavities. For spatial symmetry-breaking, a cavity must discriminate the handedness of circularly polarized light, a functionality uniquely provided by chiral metamaterials. Here, we propose and demonstrate experimentally a chiral transition metal dichalcogenide (TMDC) metasurface with broken out-of-plane symmetry, allowing for the selective formation of self-hybridized exciton-polaritons with specific handedness.…
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