Laboratoire de Photonique et Nanostructures (LPN-CNRS), Route de Nozay, 91460 Marcoussis, France.
Phys Rev Lett. 2012 Oct 5;109(14):143903. doi: 10.1103/PhysRevLett.109.143903. Epub 2012 Oct 4.
We demonstrate that almost 100% of incident photons can interact with a monolayer of scatterers in a symmetrical environment. Nearly perfect optical extinction through free-standing transparent nanorod arrays has been measured. The sharp spectral opacity window, in the form of a characteristic Fano resonance, arises from the coherent multiple scattering in the array. In addition, we show that nanorods made of absorbing material exhibit a 25-fold absorption enhancement per unit volume compared to unstructured thin film. These results open new perspectives for light management in high-Q, low volume dielectric nanostructures, with potential applications in optical systems, spectroscopy, and optomechanics.
我们证明,在对称环境中,几乎 100%的入射光子可以与单层散射体相互作用。已经测量到通过独立式透明纳米棒阵列实现的近乎完美的光吸收。这种尖锐的光谱不透明度窗口,以特征的 Fano 共振的形式出现,是由阵列中的相干多次散射引起的。此外,我们表明,与非结构化薄膜相比,由吸收材料制成的纳米棒在单位体积内表现出 25 倍的吸收增强。这些结果为在高 Q 值、低体积介电纳米结构中的光管理开辟了新的前景,在光学系统、光谱学和光机械学中有潜在的应用。