Engineering & Technologyarticle2026-08-22

Tunable Polariton Canalization in Natural Van Der Waals Oxide

Open access0 citations

Abstract

ABSTRACT Hyperbolic phonon polaritons (HPPs) are coupled oscillations of anisotropic lattice vibrations and electromagnetic fields that confine the latter to the nanoscale, enabling novel nano‐polaritonic devices. While HPPs have been identified in multiple layered materials, achieving advanced control and manipulation—particularly polariton canalization for unidirectional energy flow—often necessitates complex device fabrications or crystal modifications. Here we visualize and elucidate the properties of in‐plane hyperbolicity in α‐V 2 O 5 , a layered compound with a highly anisotropic permittivity tensor. We show unidirectional Poynting‐vector propagation of polaritons in α‐V 2 O 5 without additional treatments. Combined with theoretical modeling, our infrared nano‐imaging studies unveil a novel form of polariton canalization, with its dispersion contour continuously tunable by the incident light frequency. Additionally, we provide a theoretically calculated permittivity phase diagram for tailoring polaritonic wavefronts. These findings suggest that the metal‐oxide α‐V 2 O 5 holds great promise for on‐demand light canalization and control at the nanoscale.

// Source

View paper (DOI)Open access versionOpenAlexAdvanced Optical MaterialsPublished 2026-08-22

Authors: H Shiravi, W. Q. Zheng, D.A. Rhodes, L. Balicas, H. D. Zhou, G-X Ni

Institutions: Florida State University, University of Wisconsin–Madison, University of Tennessee at Knoxville, University of Wisconsin System, Baylor University, National High Magnetic Field Laboratory