Gras Alexandre, Yan Wei, Lalanne Philippe
Opt Lett. 2019 Jul 15;44(14):3494-3497. doi: 10.1364/OL.44.003494.
Grating spectra exhibit sharp variations of the scattered light, known as grating anomalies. The latter are due to resonances that have fascinated specialists of optics and physics for decades and are today used in many applications. We present a comprehensive theory of grating anomalies and develop a formalism to expand the field scattered by metallic or dielectric gratings into the basis of its natural resonances, thereby enabling the possibility to reconstruct grating spectra measured for fixed illumination angles as a sum over every individual resonance contribution with closed-form expressions. This gives physical insights into the spectral properties and direct access to the resonances to engineer the spectral response of gratings and their sensitivity to tiny perturbations.
光栅光谱表现出散射光的急剧变化,这被称为光栅异常。后者是由几十年来一直吸引着光学和物理领域专家的共振引起的,如今在许多应用中都有使用。我们提出了一种关于光栅异常的综合理论,并开发了一种形式体系,将金属或介质光栅散射的场扩展到其固有共振的基上,从而能够将在固定照明角度下测量的光栅光谱重建为每个单独共振贡献的总和,并给出封闭形式的表达式。这为光谱特性提供了物理见解,并能直接获取共振,以设计光栅的光谱响应及其对微小扰动的灵敏度。