论文标题

光子晶体材料相关的光学效果和应用

Optical Effects and Applications Associated with Photonic Crystal Materials

论文作者

Lonergan, Alex, O'Dwyer, Colm

论文摘要

选择性重定向光波长的能力吸引了光子晶体材料的广泛关注。目前,有大量与光子晶体材料的制造和应用有关的研究。有许多结构使光子晶体的类别降低; 1d,2d和3d有序结构可以作为光子晶体符合限定,前提是有排序的重复介电材料的晶格,并具有足够的折射率对比度。对于任何涉及光的应用,这些结构的光学响应,即相关的光子带隙或停止带。光子带隙对晶格大小或折射率组成的变化的敏感性产生了可能性的可能性。通常利用光子带隙边缘的波长处的波长降低组速度的光学现象被用于光催化应用。光子带隙的固有反射率已在光学波导或太阳能电池反射层层中创建应用。有无数的研究试图利用这些光子晶体行为的这些方面,以改善材料设计。在这里,光子晶体的作用在各种学科中进行了审查。分类这些结构增强了特定应用的方式。特别重点是提供对光子晶体在其应用相关的光子晶体中可调光响应的特定功能的理解。

The ability to selectively redirect specific wavelengths of light has attracted a lot attention for photonic crystal materials. Presently, there is a wealth of research relating to the fabrication and application of photonic crystal materials. There a number of structures which fallinto the category of a photonic crystal; 1D, 2D and 3D ordered structures can qualify as a photonic crystal, provided there exists ordered repeating lattices of dielectric material with a sufficient refractive index contrast. The optical responses of these structures, namely the associated photonic bandgap or stopband, are of particular interest for any application involving light. The sensitivity of the photonic bandgap to changes in lattice size or refractive index composition creates the possibility foraccurate optical sensors. Optical phenomena involving reduced group velocity at wavelengths on the edge of the photonic bandgap are commonly exploited for photocatalytic applications. The inherent reflectivity of the photonic bandgap has created applications in optical waveguides or as solar cell reflector layers. There are countless examples of research attempting to exploit these facets of photonic crystal behaviorfor improved material design. Here, the role of photonic crystals is reviewed across a wide a variety of disciplines; cataloguing the ways in which these structures have enhanced specific applications. Particular emphasis is placed on providing an understanding of the specific function of the tunable optical response in photonic crystals in relation to their application.

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