Title :
Theory and Design of Off-Axis Microring Resonators for High-Density On-Chip Photonic Applications
Author :
Haldar, Raktim ; Das, S. ; Varshney, S.K.
Author_Institution :
Dept. of E&ECE, Indian Inst. of Technol. Kharagpur, Kharagpur, India
Abstract :
In this paper, we have developed a theory of an off-axis microring resonator (MRR) with single and multiple off-axis rings. The off-axis inner ring introduces tunable extra notches with many striking features in the transmission spectrum which facilitates its use as efficient modulators and sensors. A few such notches when closely packed have been used to design a compact band rejection filter with improved bandwidth (>10 nm). Moreover, these closely packed extra notches achieved by serially coupled MRRs with off-axis inner rings are tunable to reject arbitrarily chosen WDM channels. Through numerical simulations, based on both transfer matrix method and finite difference time domain method, it has been examined that off-axis MRRs cater superior performances in comparison to the serially coupled conventional MRR with respect to the device size, faster response, and low dispersion. The proposed off-axis MRRs may be used for cluster to cluster interconnects and can have other potential on-chip photonic applications in network layer. Necessary design parameters are computed from the coupled mode theory.
Keywords :
coupled mode analysis; finite difference time-domain analysis; infrared spectra; integrated optoelectronics; micro-optomechanical devices; micromechanical resonators; notch filters; optical communication equipment; optical design techniques; optical dispersion; optical filters; optical resonators; optical tuning; telecommunication channels; wavelength division multiplexing; WDM channels; cluster-to-cluster interconnects; compact band rejection filter; coupled mode theory; design parameters; finite difference time domain method; high-density on-chip photonic applications; modulators; multiple off-axis rings; network layer; numerical simulations; off-axis inner ring; off-axis microring resonators; sensors; single off-axis rings; transfer matrix method; transmission spectrum; tunable extra notch; Band-pass filters; Couplers; Couplings; Filtering theory; Finite difference methods; Optical filters; Resonator filters; Add–drop filters; WDM; band rejection filters; high density photonic circuits; off-axis microring resonator;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2013.2278552