Title :
Minimum drop-loss design of microphotonic microring-resonator channel add-drop filters
Author :
Dasic, Miljan ; Popovic, Milos A.
Author_Institution :
Dept. of Electr., Univ. of Colorado Boulder, Boulder, CO, USA
Abstract :
Microring-resonator filters have important applications as filtering elements in microphotonic circuits. In this paper, we address the question of optimum design of resonator-based add-drop filters in the presence of finite losses, and show that symmetric coupling provides the optimum design. This conclusion contravenes previous work on this subject, and the oft-cited critically coupled resonator case. While the minimum bandwidth of a resonant filter is ultimately limited by intrinsic losses, i.e. the intrinsic Q, we show that the symmetric design can approach twice as narrow a linewidth as a critically coupled design for the same losses, in principle. We present a coupledmode theory (CMT) model, and a complete electromagnetic device design example based on finite-difference time-domain field simulations which validates our conclusions.
Keywords :
finite difference time-domain analysis; integrated optics; micro-optics; optical design techniques; optical filters; coupled mode theory; critically coupled design; critically coupled resonator; finite difference time-domain field simulations; microphotonic circuits; microphotonic microring-resonator channel add-drop filters; minimum drop loss design; optimum design; that symmetric coupling; Bandwidth; Couplings; Finite difference methods; Optical filters; Optical losses; Photonics; Time domain analysis; Microring resonators; channel add-drop filters; coupled mode theory; filter synthesis; power splitters;
Conference_Titel :
Telecommunications Forum (TELFOR), 2012 20th
Conference_Location :
Belgrade
Print_ISBN :
978-1-4673-2983-5
DOI :
10.1109/TELFOR.2012.6419360