Ning Tingyin, Liang Huawei, Huo Yanyan, Zhao Lina
Opt Express. 2020 Jul 6;28(14):20532-20542. doi: 10.1364/OE.396713.
Optical bistability of linear reflectance and third-harmonic generation is investigated in a metasurface consisting of metallic grating coupled with metallic film spaced with nonlinear dielectric material. Linear optical reflectance and electric field enhancement are achieved for gaps <20 nm in the presence of classical nonlocality in metallic nanostructures. Enlarged thresholds from the higher to lower reflectance states are observed from 140 kW/cm for the local model to 300 kW/cm for the nonlocal model for 0.5-nm gaps. Though the linear reflectance almost overlaps for local and nonlocal models for 20-nm gaps, the optical bistability hysteresis loops retain large differences because local field differences are amplified owing to the relation of nonlinear refraction with square of local field and historical evolution of the optical bistability.
研究了由金属光栅与间隔有非线性介电材料的金属薄膜耦合而成的超表面中的线性反射率和三次谐波产生的光学双稳性。在金属纳米结构中存在经典非局域性的情况下,对于间隙小于20纳米的情况,实现了线性光学反射率和电场增强。对于0.5纳米的间隙,从局部模型的140千瓦/平方厘米到非局部模型的300千瓦/平方厘米,观察到从较高反射率状态到较低反射率状态的阈值增大。尽管对于20纳米的间隙,局部和非局部模型的线性反射率几乎重叠,但光学双稳性滞后回线仍存在很大差异,这是因为由于非线性折射与局部场平方的关系以及光学双稳性的历史演变,局部场差异被放大了。