Manipulation of waves in Polariton Topological Insulators

As a frontier in condensed matter physics, the concept of topological insulators has been successfully extended from electronic systems to photonic systems and even to structured microcavities, where strong photon-exciton coupling gives rise to hybrid part-light, part-matter exciton-polaritons quasiparticles. Polaritons inherit the low-loss, tunable characteristics of photons while retaining strong excitonic nonlinear interactions, offering an ideal nonequilibrium platform for exploring topological states. This review systematically surveys the progress of topological insulators in exciton-polariton systems, with emphasis on their underlying physical mechanisms, exotic quantum phenomena induced by various strategies, and the impact of nonlinear effects on topological states. Finally, we discuss the key challenges currently facing this field and provide an outlook on future research directions.

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Publication Details

Journal
Journal of Physics Condensed Matter
Published
2026-09-18
DOI
https://doi.org/10.1088/1361-648x/aeaa03
Primary Topic
Strong Light-Matter Interactions
Type
article
Field-Weighted Citation Impact
0.00

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article

Manipulation of waves in Polariton Topological Insulators

Chunyan Li, Songlei Huang, Yiming Ning, Tong Ling
Journal of Physics Condensed Matter
Strong Light-Matter Interactions
article

Manipulation of waves in Polariton Topological Insulators

Chunyan Li, Songlei Huang, Yiming Ning, Tong Ling
article en

Abstract

As a frontier in condensed matter physics, the concept of topological insulators has been successfully extended from electronic systems to photonic systems and even to structured microcavities, where strong photon-exciton coupling gives rise to hybrid part-light, part-matter exciton-polaritons quasiparticles. Polaritons inherit the low-loss, tunable characteristics of photons while retaining strong excitonic nonlinear interactions, offering an ideal nonequilibrium platform for exploring topological states. This review systematically surveys the progress of topological insulators in exciton-polariton systems, with emphasis on their underlying physical mechanisms, exotic quantum phenomena induced by various strategies, and the impact of nonlinear effects on topological states. Finally, we discuss the key challenges currently facing this field and provide an outlook on future research directions.

Journal of Physics Condensed Matter
Xidian University (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 13%
Strong Light-Matter Interactions
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Manipulation of waves in Polariton Topological Insulators — Chunyan Li, Songlei Huang, et al. · Journal of Physics Condensed Matter (2026) | TGRS Research Map | TGRS