3D harnessing of light with 2.5D photonic crystals
β Scribed by P. Viktorovitch; B. Ben Bakir; S. Boutami; J. Louis Leclercq; X. Letartre; P. Rojo-Romeo; C. Seassal; M. Zussy; L. Di Cioccio; J.Marc Fedeli
- Publisher
- John Wiley and Sons
- Year
- 2010
- Tongue
- English
- Weight
- 751 KB
- Volume
- 4
- Category
- Article
- ISSN
- 1863-8880
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β¦ Synopsis
Abstract
It is emphasized that twoβdimensional photonic crystals (2D PC) have not only a great potential for the development of 2D nanophotonics in the inplane waveguided configuration, but that they may also open the way to other brilliant developments, with an extension to outβofβplane operation, along a 2.5D nanophotonics approach. In this 2.5D approach, a 1Dβ2D high index contrast lateral structuration is combined with a 1D high index contrast vertical structuration, using multilayer membrane stacks including 1Dβ2D photonic crystal membranes, thus resulting in soβcalled 2.5D PC. As a specific illustration of recent achievements along this approach, new families of VCSEL structures are presented.
π SIMILAR VOLUMES
We review some of the recent advances in the theory of photonic crystals, drawing examples from our own work in magneto-optical and dynamic photonic crystals. The combination of theory and simulations shows that these crystal structures exhibit rich optical physics effects, and can provide new ways