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May 9, 2026Electromagnetic Science0 citationsOpen Access

Quasi-Bound States in the Continuum of Localized Spoof Surface Plasmons Transverse Magnetic Modes

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SLSi‐qi LiPeking UniversityMCMing-Zhe ChongPeking UniversityFZFeng ZhangPeking University

Key Points

  • The study aims to realize quasi-bound states in the continuum of transverse magnetic modes of localized spoof surface plasmons on a circular grating metasurface.
  • Developed LSSPs quasi-BICs on a nonparallel circular grating metasurface using a linearly polarized plane wave.
  • Mechanically reconfigured circular gratings to create asymmetry allowing excitation of TM modes from true-BICs to quasi-BICs.
  • Conducted experiments to measure Q-factors of TM modes.
  • The Q-factor of TM2.1 was measured at 305.0, indicating high quality and low radiation loss.
  • Quasi-BICs of LSSPs TM modes exhibited higher Q-factors compared to TE modes due to strong vertical coupling.
  • Transition of TM modes from true-BICs to quasi-BICs highlights potential for new LSSP applications.

Abstract

Recently, quasi-bound states in the continuum (quasi-BICs) of localized spoof surface plasmons (LSSPs) have been developed on several metasurfaces with broken symmetry, which have high quality factors (Q-factors) because of low radiation loss. They are transverse electric (TE) modes. In this paper, the quasi-BICs of LSSPs transverse magnetic (TM) modes are realized on a nonparallel circular grating metasurface with a linearly polarized plane wave. When the circular gratings are placed in parallel, the LSSPs TM modes on the metasurface cannot be excited by the plane wave, because they are true-BICs protected by rotational symmetry; when the circular gratings are mechanically reconfigured to be nonparallel, owing to the asymmetry of the structure, the LSSPs TM modes turn into quasi-BICs from the true-BICs and can be excited. Owing to the strong coupling between the circular gratings in the vertical coupling configuration, the quasi-BICs of the LSSPs TM modes have higher Q-factors compared with the quasi-BICs of the LSSPs TE modes. An experiment was conducted and the Q-factor of TM₂. ₁ was measured to be 305. 0. This study provides a new idea for developing LSSPs with low radiation loss. It also extends the LSSPs from two-dimensional to three-dimensional, and brings new potential of transformation.

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Cite This Study

Li et al. (2026) studied this question.

synapsesocial.com/papers/69fece83b9154b0b82875f60https://doi.org/10.23919/emsci.2025.0018
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