Title :
Canonic Design of Parallel Cascades of Symmetric Two-Port Microring Networks
Author_Institution :
Dept. of Electr. & Comput. Eng., Univ. of Alberta, Edmonton, AB, Canada
Abstract :
A method for obtaining the optimal canonic design of optical filters based on parallel-cascaded arrays of symmetric two-port microring networks is presented. The approach is based on the all-pass decomposition of the parallel-cascaded microring architecture, whereby the filter is transformed into an equivalent sum-difference all-pass microring circuit via a similarity transformation of the transfer matrix. The sum-difference transformation also helps reveal important properties of the parallel-cascaded microring architecture, such as the doubly complementary nature of its transfer functions, and the existence and uniqueness of the canonic form of parallel-cascaded arrays of symmetric microring networks.
Keywords :
micro-optomechanical devices; micromechanical resonators; optical arrays; optical filters; optical resonators; optical transfer function; two-port networks; all-pass decomposition; equivalent sum-difference all-pass microring circuit; optical filters; optimal canonic design; parallel-cascaded arrays; similarity transformation; sum-difference transformation; symmetric two-port microring networks; transfer functions; transfer matrix; All-pass microrings; microring arrays; microring ladder filters; microring resonators; optical filters;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2009.2029706