Institute of Optics, Information and Photonics, University of Erlangen-Nuremberg, Günther-Scharowsky-Str.1, 91058 Erlangen, Germany.
Adv Mater. 2011 Jun 17;23(22-23):2515-33. doi: 10.1002/adma.201100460. Epub 2011 May 19.
We review the recently emerged class of hybrid metal-dielectric colloidal photonic crystals. The hybrid approach is understood as the combination of a dielectric photonic crystal with a continuous metal film. It allows to achieve a strong modification of the optical properties of photonic crystals by involving the light scattering at electronic excitations in the metal component into moulding of the light flow in series to the diffraction resonances occurring in the body of the photonic crystal. We consider different realizations of hybrid plasmonic-photonic crystals based on two- and three-dimensional colloidal photonic crystals in association with flat and corrugated metal films. In agreement with model calculations, different resonance phenomena determine the optical response of hybrid crystals leading to a broadly tuneable functionality of these crystals.
我们回顾了最近出现的一类混合金属-介电胶体光子晶体。混合方法被理解为介电光子晶体与连续金属膜的结合。它允许通过将金属组件中的电子激发引起的光散射纳入到对光子晶体体中发生的衍射共振的光流的模塑中,从而实现对光子晶体光学性质的强烈改性。我们考虑了基于二维和三维胶体光子晶体与平面和波纹金属膜相结合的混合等离子体-光子晶体的不同实现。与模型计算一致,不同的共振现象决定了混合晶体的光学响应,从而使这些晶体具有广泛可调谐的功能。