Physics – Condensed Matter – Materials Science
Scientific paper
2006-12-27
Phys. Rev. B 75, 205430 (2007)
Physics
Condensed Matter
Materials Science
6 pages, 7 figures. Version 2: corrected sign of k_x' (sections 4-6, fig. 2), minor clarifications in section 2. Version 3: si
Scientific paper
10.1103/PhysRevB.75.205430
We propose a quantitative model explaining the mechanism of light collimation by leaky surface modes that propagate on a corrugated surface around the output of a photonic crystal waveguide. The dispersion relation of these modes is determined for a number of surface terminations. Analytical results obtained on the basis of the model are compared to those of rigorous numerical simulations. Maximum collimation is shown to occur at frequency values corresponding to excitation of surface modes whose wave number retains a nonzero real part.
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