Publication | Open Access
Integrated Silicon Photonics for Enabling Next-Generation Space Systems
45
Citations
67
References
2021
Year
Photonic DevicePhotonicsElectrical EngineeringOptical InterconnectsDisplacement DamageIntegrated PhotonicsEngineeringApplied PhysicsPhotonic Integrated CircuitProgrammable PhotonicsRadiation EffectsMicroelectronicsMicrowave PhotonicsOptoelectronicsSilicon On InsulatorSilicon Photonics
A review of silicon photonics for space applications is presented. The benefits and advantages of size, weight, power, and cost (SWaP-C) metrics inherent to silicon photonics are summarized. Motivation for their use in optical communications systems and microwave photonics is addressed. The current state of our understanding of radiation effects in silicon photonics is included in this discussion. Total-ionizing dose, displacement damage, and single-event transient effects are discussed in detail for germanium-integrated photodiodes, silicon waveguides, and Mach-Zehnder modulators. Areas needing further study are suggested.
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