Title :
Tapered acoustical directional couplers for integrated acousto-optical mode converters with weighted coupling
Author :
Herrmann, Harald ; Rust, Ulrich ; Schäfer, Klaus
Author_Institution :
Angewandte Phys., Paderborn Univ., Germany
fDate :
3/1/1995 12:00:00 AM
Abstract :
Weighted coupling for strong sidelobe suppression of integrated acoustooptical mode converters in LiNbO3 using acoustical directional couplers has been studied theoretically and experimentally. A parameter free model for the propagation of surface acoustic waves in guiding structures has been developed based on a step-like variation of the acoustic velocity. Comparisons of theoretical results with experimental ones for acoustic waveguides and directional coupler structures confirm the applicability of the model. A coupled mode description of the acousto-optical polarization conversion in converters with acoustical directional couplers has been developed and applied to several tapered acoustical directional couplers. The model reveals that the conversion characteristics are usually strongly asymmetric. If the directional coupler is appropriately designed, a sidelobe suppression of about 30 db can be achieved. First experimental results with tapered directional couplers confirm within some limits the theoretical predictions
Keywords :
acousto-optical devices; directional couplers; light polarisation; lithium compounds; multiplexing equipment; optical communication equipment; optical directional couplers; optical fibre communication; optical planar waveguides; surface acoustic wave couplers; wavelength division multiplexing; LiNbO3; acoustic velocity; acoustic waveguides; acoustical directional couplers; acousto-optical polarization conversion; directional coupler structures; guiding structures; integrated acousto-optical mode converters; parameter free model; step-like variation; strong sidelobe suppression; surface acoustic waves; tapered acoustical directional couplers; weighted coupling; Acoustic waveguides; Acoustic waves; Directional couplers; Optical crosstalk; Optical filters; Optical polarization; Optical surface waves; Optical waveguides; Surface acoustic waves; Wavelength division multiplexing;
Journal_Title :
Lightwave Technology, Journal of