Publication | Open Access
Heterogeneous Integration on Silicon Photonics
46
Citations
90
References
2018
Year
EngineeringDevice IntegrationIntegrated PhotonicsProgrammable PhotonicsNanoelectronicsActive PolymersGuided-wave OpticPhotonic Integrated CircuitNanophotonicsMaterials SciencePhotonicsElectrical EngineeringOptical InterconnectsLead Zirconate TitanatePhotonic MaterialsPhotonic DeviceSilicon PhotonicsElectro-optics DeviceThree-dimensional Heterogeneous IntegrationApplied PhysicsGrapheneOptoelectronicsLight Emission
To enhance the functionality of the standard silicon photonics platform and to overcome its limitations, in particular for light emission, ultrafast modulation, and nonlinear applications, integration with novel materials is being investigated by several groups. In this paper, we will discuss, among others, the integration of silicon waveguides with ferroelectric materials such as lead zirconate titanate (PZT) and barium titanate (BTO), with electro-optically active polymers, with 2-D materials such as graphene and with III-V semiconductors through epitaxy. We discuss both the technology and design aspects.
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