Design of Chiral Metasurfaces with Independent Control of Quality Factor Based on Guided-Mode Resonance

Chiral metasurfaces with high quality factors (Q-factors) have significant application value in fields such as polarization detection and chiral sensing. However, for most current chiral metasurfaces, the Q-factor and circular dichroism (CD) are intrinsically intertwined due to their common structural origin, which fundamentally hinders their independent tuning. To address this challenge, a planar chiral metasurface structure based on guided-mode resonance (GMR) is proposed. Positional offsets along two orthogonal directions are introduced within a dual-dielectric-column unit to generate an intrinsic chiral response, while a scale factor s is used to modify the dimensions of one dielectric column with the relative positional asymmetry fixed. The results show that the Q-factor can be continuously tuned from 4073 to 28,142 over the primary tuning range 0.7 ≤ s ≤ 1.4, while the CD remains above 0.9. Moreover, the structure maintains a tunable Q-factor and high CD under weak material loss and the considered structural deviations. Overall, these results demonstrate a single-scale-factor approach for continuous Q-factor tuning while preserving a strong and stable chiral response.

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Publication Details

Journal
Photonics
Published
2026-09-30
DOI
https://doi.org/10.3390/photonics13100931
Primary Topic
Metamaterials and Metasurfaces Applications
Type
article
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article

Design of Chiral Metasurfaces with Independent Control of Quality Factor Based on Guided-Mode Resonance

Fangzhou Chen, Shuojun Zhang
Photonics
Metamaterials and Metasurfaces Applications
article

Design of Chiral Metasurfaces with Independent Control of Quality Factor Based on Guided-Mode Resonance

Fangzhou Chen, Shuojun Zhang
article en

Abstract

Chiral metasurfaces with high quality factors (Q-factors) have significant application value in fields such as polarization detection and chiral sensing. However, for most current chiral metasurfaces, the Q-factor and circular dichroism (CD) are intrinsically intertwined due to their common structural origin, which fundamentally hinders their independent tuning. To address this challenge, a planar chiral metasurface structure based on guided-mode resonance (GMR) is proposed. Positional offsets along two orthogonal directions are introduced within a dual-dielectric-column unit to generate an intrinsic chiral response, while a scale factor s is used to modify the dimensions of one dielectric column with the relative positional asymmetry fixed. The results show that the Q-factor can be continuously tuned from 4073 to 28,142 over the primary tuning range 0.7 ≤ s ≤ 1.4, while the CD remains above 0.9. Moreover, the structure maintains a tunable Q-factor and high CD under weak material loss and the considered structural deviations. Overall, these results demonstrate a single-scale-factor approach for continuous Q-factor tuning while preserving a strong and stable chiral response.

PhotonicsVol. 13(10)
Nanjing University of Aeronautics and Astronautics (CN)
Openalex Percentile: Top 30%
Metamaterials and Metasurfaces Applications
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Design of Chiral Metasurfaces with Independent Control of Quality Factor Based on Guided-Mode Resonance — Fangzhou Chen, Shuojun Zhang · Photonics (2026) | TGRS Research Map | TGRS