Publication | Closed Access
Subbandgap laser-induced single event effects: carrier generation via two-photon absorption
250
Citations
14
References
2002
Year
Optical PumpingPhotonicsElectrical EngineeringQuantum PhotonicsCarrier GenerationEngineeringPhysicsLaser ScienceOptical PropertiesPhotonic DeviceApplied PhysicsSingle Event EffectsSubbandgap Two-photon AbsorptionPhotonic Integrated CircuitPhoton EnergyMicrowave PhotonicsHigh-power LasersOptoelectronics
Carrier generation based on subbandgap two-photon absorption is demonstrated and shown to be a viable alternative to the conventional single-photon excitation approach in laser-induced single event effects. The two-photon approach exhibits characteristics distinct from those of single-photon excitation, and may be advantageous for a range of single-event effect investigations. The charge track produced by two-photon absorption more closely resembles that of heavy-ion irradiation and, because the photon energy is subbandgap, backside injection through bulk silicon wafers is straightforward and three-dimensional mapping is possible.
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