High-Q toroidal resonances enabled by tailoring field spatial localization in all-dielectric metasurfaces

High-Q toroidal dipole resonances in all-dielectric metasurfaces have attracted intense attention due to their exceptional light-matter interaction capability. Here, we present and experimentally demonstrate an all-dielectric metasurface supporting polarization-insensitive high-quality (Q) factor toroidal resonances. By breaking in-plane structural symmetry via unequal circular air holes within a silicon-on-insulator unit cell, we transform symmetry-protected bound states in the continuum into high-Q quasi-toroidal dipole resonances. Because the intrinsic field perturbation occurs primarily within the weak field region, toroidal resonances maintains an ultra-narrow linewidth. Crucially, the macroscopic C 4 rotational symmetry guarantees a completely polarization-independent spectral response. Experimental measurements show excellent agreement with finite-difference time-domain simulations, capturing a sharp resonance with a measured Q-factor reaching ∼1931. Our high-Q toroidal-resonance metasurfaces offer great promise for polarization-insensitive filters, high-sensitivity biosensors, and nonlinear nanophotonic devices.

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Publication Details

Journal
Optics Express
Published
2026-10-06
DOI
https://doi.org/10.1364/oe.613015
Primary Topic
Metamaterials and Metasurfaces Applications
Type
article
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article

High-Q toroidal resonances enabled by tailoring field spatial localization in all-dielectric metasurfaces

Yanlin Zhu, Jin Xiang, zhou wenchao, Guangxiang Li et al.
Optics Express
Metamaterials and Metasurfaces Applications
article

High-Q toroidal resonances enabled by tailoring field spatial localization in all-dielectric metasurfaces

Yanlin Zhu, Jin Xiang, zhou wenchao, Guangxiang Li, Chen Peng, Yulong Cao, Yan Chang, Hanpeng Zhou, Siliang Liu, Haizhou Wang
article en

Abstract

High-Q toroidal dipole resonances in all-dielectric metasurfaces have attracted intense attention due to their exceptional light-matter interaction capability. Here, we present and experimentally demonstrate an all-dielectric metasurface supporting polarization-insensitive high-quality (Q) factor toroidal resonances. By breaking in-plane structural symmetry via unequal circular air holes within a silicon-on-insulator unit cell, we transform symmetry-protected bound states in the continuum into high-Q quasi-toroidal dipole resonances. Because the intrinsic field perturbation occurs primarily within the weak field region, toroidal resonances maintains an ultra-narrow linewidth. Crucially, the macroscopic C 4 rotational symmetry guarantees a completely polarization-independent spectral response. Experimental measurements show excellent agreement with finite-difference time-domain simulations, capturing a sharp resonance with a measured Q-factor reaching ∼1931. Our high-Q toroidal-resonance metasurfaces offer great promise for polarization-insensitive filters, high-sensitivity biosensors, and nonlinear nanophotonic devices.

Optics ExpressVol. 34(21)
Chongqing University (CN)
Openalex Percentile: Top 32%
Metamaterials and Metasurfaces Applications
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