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October 1, 2025Physica Scripta5 citations

3D Intrinsic Chiral BIC Metasurface Enabling Strong Linear and Nonlinear CD with Efficient THG

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YJYang JiaXZXin ZhangJCJia‐Xuan Chen

Key Points

  • The metasurface achieves a remarkably high Q-factor of 11,965 at 3.1318 THz, enhancing its operational efficiency.
  • Circular dichroism (CD) value reaches 0.95, indicating strong polarization selectivity for wave interactions.
  • Under right-handed excitation, the nonlinear circular dichroism-driven THG efficiency is approximately 1.06 × 10^-3, significantly higher compared to left-handed excitation.
  • Complete mirror symmetry breaking is crucial for activating the 3D intrinsic chiral BIC, enhancing the metasurface's function.

Abstract

Abstract A three-dimensional (3D) intrinsic chiral bound state in the continuum (BIC) metasurface is presented in this paper, which achieves strong linear circular dichroism (CD) with a high Q-factor and pronounced polarization-selective third harmonic generation (THG) arising from nonlinear circular dichroism (NLCD). The metasurface is composed of an all-dielectric silicon plate patterned with a periodic array of right-trapezoidal holes. By breaking all mirror symmetries, the metasurface supports a quasi-BIC (QBIC) and exhibits a CD value of 0.95 and a Q-factor of 11,965 at 3.1318 THz. Meanwhile, under right-handed circularly polarized wave (RCP) excitation, the metasurface demonstrates an NLCD-driven THG efficiency of 1.06 ×10 -3 , which is approximately seven orders of magnitude higher than the 1.82 × 10 -10 obtained under left-handed circularly polarized wave (LCP) excitation. Multipole decomposition reveals that the chiral BIC resonance is predominantly governed by a magnetic dipole mode, providing strong local field enhancement under RCP illumination. Far-field polarization and optical chirality density (OCD) analyses further confirm that complete mirror symmetry breaking is essential for inducing the 3D intrinsic chiral BIC. The proposed metasurface offers a promising route toward chiral-selective radiation, high-efficiency nonlinear optics, and terahertz photonic devices.

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Cite This Study

Jia et al. (2025) studied this question.

synapsesocial.com/papers/68dd91cbfe798ba2fc4987f6https://doi.org/10.1088/1402-4896/ae0dc5
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