Publication | Open Access
High-efficiency and wideband interlayer grating couplers in multilayer Si/SiO_2/SiN platform for 3D integration of optical functionalities
66
Citations
14
References
2014
Year
Optical MaterialsEngineeringOptoelectronic DevicesIntegrated CircuitsSilicon On InsulatorOptical PropertiesGuided-wave OpticPhotonic Integrated CircuitOptical SystemsWideband InterlayerGraded-reflectivity MirrorsSingle/double Metallic ReflectorsNanophotonicsSin LayersMaterials SciencePhotonicsPlanar Waveguide SensorOptical InterconnectsPhotonic MaterialsMultilayer Si/sio_2/sin PlatformOptical FunctionalitiesPhotonic DeviceDepth-graded Multilayer CoatingFinite Element MethodApplied PhysicsOptoelectronics
We have designed interlayer grating couplers with single/double metallic reflectors for Si/SiO(2)/SiN multilayer material platform. Out-of-plane diffractive grating couplers separated by 1.6 μm thick buffer SiO(2) layer are vertically stacked against each other in Si and SiN layers. Geometrical optimization using genetic algorithm coupled with electromagnetic simulations using two-dimensional (2D) finite element method (FEM) results in coupler designs with high peak coupling efficiency of up to 89% for double- mirror and 64% for single-mirror structures at telecom wavelength. Also, 3-dB bandwidths of 40 nm and 50 nm are theoretically predicted for the two designs, respectively. We have fabricated the grating coupler structure with single mirror. Measured values for insertion loss and 3-dB bandwidth in the fabricated single-mirror coupler confirms the theoretical results. This opens up the possibility of low-loss 3D dense integration of optical functionalities in hybrid material platforms.
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