Semiconductor Physics, Quantum Electronics & Optoelectronics. 2005. V. 8, N 1. P. 064-071.
Theory of two-dimensional photonic crystals with lamellar
cylindrical pores
V. Lashkaryov Institute of Semiconductor Physics, NAS of Ukraine, 45, prospect Nauky, 03028 Kyiv, Ukraine
Phone: 525-98-15
E-mail: a_glushko@ukr.net
Abstract. Theoretical investigation of 2D photonic crystals containing intermediate
layers on the surface of cylindrical pores is performed within the framework of the
plane-wave model. We have analyzed how the third medium introduction influences on
the absolute bandgap formation in the triangular lattice photonic structure. We have
obtained the dependences of the bandgap width and position on the additional interlayer
thickness d and its dielectric constant εi. The new concept of photonic contrast is
introduced in order to describe the bandgap formation conditions. We conclude that
addition of the surface layer decreases the photonic band gap width of the examined
system.
Keywords: 2D photonic crystal, lamellar pores, photonic contrast, band structure.
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