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Photoconductive properties of the Er-doped InP
10
Citations
10
References
1994
Year
PhotonicsElectronic Excited StatePhotoluminescenceEngineeringEr3+-related Photoconductive TransitionsPhotochemistryOptical PropertiesPhotoconductive PropertiesApplied PhysicsExcitation Energy TransferPhotophysical PropertyPhotoelectric MeasurementChemistryMolecular Beam EpitaxyEv TransitionOptoelectronicsEr3+-related Trapping CenterPhotoelectrochemistry
The photoconductive properties of Er-doped InP layers prepared by atmospheric pressure metalorganic vapor phase epitaxy were investigated. Two Er3+-related photoconductive transitions were observed at 0.807 and 1.27 eV. The 0.807 eV transition involves a 4f-shell intracenter transition. The 1.27 eV transition is attributed to a free to bound transition involving the Er3+-related trapping center. Presumably this trapping level is important in the energy transfer process determining the Er3+-related emission efficiency in InP. A model is developed to explain the photoconductive response of the Er-doped materials.
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