Coupled-cavity two-dimensional photonic crystal waveguide ring laser

Alija, A. R.; Martinez, L. J.; Postigo, P. A.; Seassal, C.; Viktorovitch, P.

Abstract

Coupled-cavity hexagonal ringlike photonic crystal lasers are fabricated as a class of single mode photonic crystal laser light sources. The structures are formed by placing one missing hole nanocavity (H1 type) between each two segments at 60 degrees that form the hexagonal ringlike photonic crystal laser. The H1 cavities act as a mode filter, clamping the frequency of emission of the laser device. The emission frequency in these rings with cavities varies as the filling factor is changed, allowing the tuning of the laser emission. Stable single mode lasing occurs with side mode suppression greater than 20 dB. This kind of devices may be used as an efficient selective filter of modes and may have important applications in future photonic devices for optical communications and optical sensing. (c) 2006 American Institute of Physics.

Más información

Título según WOS: ID WOS:000240384000002 Not found in local WOS DB
Título de la Revista: APPLIED PHYSICS LETTERS
Volumen: 89
Número: 10
Editorial: AMER INST PHYSICS
Fecha de publicación: 2006
DOI:

10.1063/1.2345374

Notas: ISI