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Chapter 6 Colloidal Photonic Crystal Architectures for Advanced Light Management Applications

机译:第6章用于高级光管理应用的胶体光子晶体架构

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A brief introduction to photonic crystals and colloidal photonic crystals in particular is given followed by an outline of the two main methods of forming colloidal photonic crystals employed by the authors' research team- controlled evaporation (CE) which leads to face centred cubic structures such as are found in natural opal gemstones and the Langmuir-Blodgett (LB) method which leads to more disordered materials. The ability to control deposition on a layer-by-layer (LbL) level using the LB approach is highlighted by a discussion of the fabrication of a so-called AB heterostructured colloidal photonic crystal, made from spheres of two different sizes. Following this the use of atomic layer deposition (ALD) to infill 3-D colloidal photonic crystals in order to be able to tune the refractive index contrast in the material is described, using as an example our work on the fabrication and characterisation of GaAs infilled colloidal photonic crystals and inverted GaAs photonic crystals that were made via infilling followed by removal of the silica host spheres. The importance of choosing the correct value for the refractive index of the infill material is highlighted and an optical Brillouin zone constructed using a free software package (MIT) which accounts for some of the observed Bragg reflections. Finally, some examples are presented which demonstrate the potential of the use of these and other similar materials for a range of novel optical applications.
机译:简要介绍了光子晶体,尤其是胶体光子晶体,然后概述了作者的研究团队控制蒸发(CE)所采用的形成胶体光子晶体的两种主要方法,这导致了面心立方结构,例如天然蛋白石宝石和Langmuir-Blodgett(LB)方法中发现了这种物质,导致材料更加无序。讨论了由两种不同尺寸的球体制成的所谓AB异质结构胶体光子晶体的制造过程,从而突出了使用LB方法控制逐层(LbL)沉积的能力。在此之后,以原子层沉积(ALD)填充3-D胶体光子晶体以能够调节材料中的折射率对比度为例,以我们在填充和填充GaAs的制造和表征方面的工作为例进行了描述胶体光子晶体和倒置砷化镓光子晶体是通过填充,然后去除二氧化硅主体球而制成的。强调了为填充材料的折射率选择正确的值的重要性,并使用免费软件包(MIT)构建了光学布里渊区,该布里渊区解释了一些观察到的布拉格反射。最后,给出了一些示例,这些示例说明了将这些材料和其他类似材料用于一系列新型光学应用的潜力。

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