Liu Di, Ren Yingying, Huo Yanyan, Cai Yangjian, Ning Tingyin
Opt Express. 2023 Jul 3;31(14):23127-23139. doi: 10.1364/OE.496853.
We numerically investigate linear and nonlinear optical responses in metasurfaces consisting of Au double-gap split ring resonators (DSRRs). Symmetry-protected dual bound states in the continuum (BICs) in such plasmonic metasurfaces are observed at the near-infrared optical regime. Efficient second harmonic generation (SHG) is obtained at the quasi-BIC models due to the symmetry broken. The optimized SHG responses are obtained at the critical couplings between radiation and nonradiation processes at the linearly x- and y-polarized light, respectively. High conversion efficiency of SHG of a value 10 is arrived at the fundamental intensity of 10 GW/cm at the quasi-BIC wavelength under the y-polarized illumination. Large extrinsic and tunable chirality of linear and nonlinear optical responses empowered by quasi-BICs is acquired in asymmetry metasurfaces at oblique circularly polarized incidence. The results indicate that the plasmonic metasurfaces of symmetry-protected BICs at the near-infrared optical regime have great potential applications in the on-chip efficient frequency conversion, and the linear and nonlinear chiral manipulation.
我们对由金双间隙分裂环谐振器(DSRR)组成的超表面中的线性和非线性光学响应进行了数值研究。在近红外光学区域观察到了这种等离子体超表面中由对称性保护的连续谱中的双束缚态(BIC)。由于对称性破缺,在准BIC模型中获得了高效的二次谐波产生(SHG)。分别在沿x和y方向线性偏振光的辐射与非辐射过程的临界耦合处获得了优化的SHG响应。在y偏振照明下,在准BIC波长处,当基波强度为10 GW/cm²时,SHG的转换效率高达10。在不对称超表面中,在斜圆偏振入射时,准BIC赋予了线性和非线性光学响应较大的外在且可调的手性。结果表明,近红外光学区域中由对称性保护的BIC的等离子体超表面在片上高效频率转换以及线性和非线性手性操纵方面具有巨大的潜在应用。