Title :
On-Chip Tunable Second-Order Differential-Equation Solver Based on a Silicon Photonic Mode-Split Microresonator
Author :
Jiayang Wu ; Boyu Liu ; Jizong Peng ; Junming Mao ; Xinhong Jiang ; Ciyuan Qiu ; Tremblay, Christine ; Yikai Su
Author_Institution :
Dept. of Electron. Eng., Shanghai Jiao Tong Univ., Shanghai, China
Abstract :
We propose and experimentally demonstrate an on-chip all-optical differential-equation solver capable of solving second-order ordinary differential equations (ODEs) characterizing continuous-time linear time-invariant systems. The photonic device is implemented by a self-coupled microresonator on a silicon-on-insulator platform with mutual coupling between the cavity modes. Owing to the mutual mode coupling within the same resonant cavity, the resonance wavelengths induced by different cavity modes are self-aligned, thus avoiding precise wavelength alignment and unequal thermal wavelength drifts as in the case of cascaded resonators. By changing the mutual mode coupling strength, the proposed device can be used to solve second-order ODEs with tunable coefficients. System demonstration using the fabricated device is carried out for 10-Gb/s optical Gaussian and super-Gaussian input pulses. The experimental results are in good agreement with theoretical predictions of the solutions, which verify the feasibility of the fabricated device as a tunable second-order photonic ODE solver.
Keywords :
differential equations; elemental semiconductors; integrated optoelectronics; micro-optomechanical devices; microfabrication; micromechanical resonators; optical fabrication; optical resonators; optical tuning; silicon; silicon-on-insulator; Si; bit rate 10 Gbit/s; cascaded resonators; cavity modes; continuous-time linear time-invariant systems; mutual mode coupling strength; on-chip tunable all-optical second-order differential-equation solver; optical superGaussian input pulses; photonic device; resonance wavelengths; resonant cavity; second-order ordinary differential equations; self-coupled microresonator; silicon photonic mode-split microresonator; silicon-on-insulator platform; thermal wavelength drifts; tunable coefficients; Couplings; Optical amplifiers; Optical device fabrication; Optical fibers; Optical filters; Optical pulses; Optical resonators; Differential-equation solver; Silicon photonics; differential-equation solver; mode splitting; resonators; silicon photonics;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2015.2442911