Title :
Modeling of Multi-Input Arrayed Waveguide Grating and Its Application to Design of Flat-Passband Response Using Cascaded Mach–Zehnder Interferometers
Author :
Maru, Koichi ; Mizumoto, Tetsuya ; Uetsuka, Hisato
Author_Institution :
Graduate Sch. of Sci. & Eng., Tokyo Inst. of Technol., Ibaraki
Abstract :
We present a theoretical model of a multi-input arrayed waveguide grating (AWG) based on Fourier optics and apply the model to the design of a flattened passband response. This modeling makes it possible to systematically analyze spectral performance and to clarify the physical mechanisms of the multi-input AWG. The model suggested that the width of an input/output mode-field function and the number of waveguides in the array are important factors to flatten the response. We also developed a model for a novel AWG employing cascaded Mach-Zehnder interferometers connected to the AWG input ports and numerically analyzed its optical performance to achieve low-loss, low-crosstalk, and flat-passband response. We demonstrated the usability of this model through investigations of filter performance. We also compared the filter spectrum given by this model with that given by simulation using the beam propagation method
Keywords :
Fourier transform optics; arrayed waveguide gratings; band-pass filters; integrated optics; light interferometry; optical communication equipment; optical crosstalk; optical fibre communication; optical losses; optical waveguide filters; wavelength division multiplexing; Fourier optics; Mach-Zehnder interferometers; arrayed waveguide grating; beam propagation method; cascaded interferometers; filter spectrum; flat-passband response; integrated optics; low-crosstalk response; low-loss response; mode-field function; multiinput AWG; optical waveguide filters; spectral performance; wavelength division multiplexing; Arrayed waveguide gratings; Mach-Zehnder interferometers; Optical arrays; Optical design; Optical filters; Optical interferometry; Optical waveguide theory; Optical waveguides; Passband; Performance analysis; Gratings; integrated optics; optical planar waveguides; optical waveguide filters; waveguide arrays; wavelength-division multiplexing (WDM);
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2006.889358