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Strong electromagnetically induced transparency effect constructed by quasi-BIC and Brillouin zone folding GMR in composite dielectric metasurfaces
Traditional electromagnetically induced transparency (EIT) typically exhibits low quality (Q) factors and limited tunability. Bound states in the continuum (BIC) offer a promising solution for achieving high-Q EIT. In this work, we engineer a high-Q EIT resonance on a silicon-membrane metasurface by coupling a quasi-BIC with a Brillouin zone folding guided mode resonance (BZF-GMR).
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Efficient second-harmonic generation in a lithium niobate metasurface governed by high-Q magnetic toroidal dipole resonances
Lithium niobate (LN) is an excellent nonlinear optical material due to its large nonlinear coefficient, low loss, and broad optical transparency window. So, it is widely used in the generation of nonlinear harmonics. Magnetic toroidal dipole (MTD) resonance is a special optical resonance mode, which can effectively localize the light field inside the device, thus enhancing the nonlinear effects of the materials.
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