Highly dispersive micro-ring resonator based on one dimensional photonic crystal waveguide design and analysis
作者:Damian Goldring, Uriel Levy, David Mendlovic · 发表于:Optics Express · 年份:2007 · DOI:10.1364/oe.15.003156 · 被引用次数:57 · 研究领域:Photonic Crystals and Applications、Photonic and Optical Devices、Advanced Fiber Optic Sensors
We propose and analyze a novel design of a hybrid micro-ring resonator and photonic crystal device. The proposed device is based on a micro-ring resonator with the addition of a series of periodic defects that are introduced to the microring. When the wavelength of operation approaches the band-gap of the periodic structure, the modal dispersion is significantly increased. The huge dispersion leads to narrowing of the spectral linewidth of the resonator. We predict an order of magnitude linewidth narrowing for a microring radius of the order of 10mum. The proposed hybrid device is analyzed theoretically and numerically using finite-elements calculations and finite-difference-time-domain calculations. We also present as well as the design and analysis of add-drop and notch filters based on the highly dispersive ring resonator.