Razmjooei Nasrin, Ko Yeong Hwan, Simlan Fairooz Abdullah, Magnusson Robert
Opt Express. 2021 Jun 7;29(12):19183-19192. doi: 10.1364/OE.427982.
Periodic guided-mode resonance structures which provide perfect reflection across sizeable spectral bandwidths have been known for decades and are now often referred to as metasurfaces and metamaterials. Although the underlying physics for these devices is explained by evanescent-wave excitation of leaky Bloch modes, a growing body of literature contends that local particle resonance is causative in perfect reflection. Here, we address differentiation of Mie resonance and guided-mode resonance in mediating resonant reflection by periodic particle assemblies. We treat a classic 2D periodic array consisting of silicon spheres. To disable Mie resonance, we apply an optimal antireflection (AR) coating to the spheres. Reflectance maps for coated and uncoated spheres demonstrate that perfect reflection persists in both cases. It is shown that the Mie scattering efficiency of an AR-coated sphere is greatly diminished. The reflectance properties of AR-coated spherical arrays have not appeared in the literature previously. From this viewpoint, these results illustrate high-efficiency resonance reflection in Mie-resonance-quenched particle arrays and may help dispel misconceptions of the basic operational physics.
几十年来,人们已经知道周期性导模共振结构能够在相当大的光谱带宽上提供完美反射,现在它们常被称为超表面和超材料。尽管这些器件的基本物理原理可以通过泄漏布洛赫模式的倏逝波激发来解释,但越来越多的文献认为,局部粒子共振是完美反射的原因。在这里,我们探讨了在周期性粒子组装介导的共振反射中米氏共振和导模共振的区别。我们研究了一个由硅球组成的经典二维周期性阵列。为了消除米氏共振,我们在球体上涂覆了一层最佳抗反射(AR)涂层。涂覆和未涂覆球体的反射率图表明,在两种情况下都存在完美反射。结果表明,涂覆AR涂层的球体的米氏散射效率大大降低。涂覆AR涂层的球形阵列的反射特性以前在文献中尚未出现。从这个角度来看,这些结果说明了在米氏共振猝灭的粒子阵列中的高效共振反射,并且可能有助于消除对基本操作物理的误解。