Title :
Optical Spectra of Composite One-Dimensional Photonic Crystals With Extended Stop Bands Based on a Si-Air Structure
Author :
Tolmachev, Vladimir A. ; Zharova, Yulia A. ; Perova, Tatiana S. ; Melnikov, Vasily A. ; Dyakov, Sergey A.
Author_Institution :
Ioffe Phys. Tech. Inst., St. Petersburg, Russia
Abstract :
The optical spectra of composite one-dimensional photonic crystals (1-D PCs), fabricated by microstructuring of Si, are investigated. The composite PC is based on a Si-air structure and consists of two periodic 1-D PCs with various lattice constants a with a1 = 2.7 μm and a2 = 4 μm and various filling fractions f. The PCs are fabricated using photolithography followed by anisotropic chemical etching of (1 1 0) Si. Reflection and transmission spectra of this structure are measured using a Fourier transform infrared spectrometer combined with an IR microscope. The transmission spectra obtained demonstrate extended photonic stop bands (SBs), with characteristic transmission bands between the SBs. Theoretical and experimental transmission results indicate that the position of the extended SBs does not depend on the sequence of the individual PCs within the composite structure. In general, the calculated electric field distribution in the composite structure is similar to that of the individual PC components.
Keywords :
Fourier transform infrared spectra; elemental semiconductors; etching; optical microscopy; photolithography; photonic crystals; silicon; (110) Si; Fourier transform infrared spectrometer; IR microscopy; Si; Si-air structure; anisotropic chemical etching; composite one-dimensional photonic crystals; electric field distribution; extended photonic stop bands; filling fractions; lattice constants; optical spectra; periodic one-dimensional photonic crystals; photolithography; reflection spectra; transmission bands; transmission spectra; Lattices; Optical device fabrication; Optical reflection; Photonic crystals; Silicon; FTIR microspectroscopy; Group IV Silicon photonics; Planar Photonic crystals; Stopband Extension; group IV silicon photonics; planar photonic crystals; stopband extension;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2015.2444356