Journal of Applied Physics · 2009 · 39 citations · 27 references
Wide-bandgap SemiconductorEngineeringOptoelectronic DevicesDeep Level DefectsSemiconductorsElectronic DevicesOptical PropertiesThin Film GanPhotoluminescencePhysicsCrystalline DefectsOptoelectronic MaterialsGan NanorodsAluminum Gallium NitrideCategoryiii-v SemiconductorNatural SciencesSpectroscopyApplied PhysicsGan Power DeviceOptoelectronics
Deep level defects in GaN nanorods (NRs) grown by metal organic chemical vapor deposition were studied using deep level optical spectroscopy (DLOS) and microphotoluminescence (μ-PL). DLOS determines the absolute optical ionization energy, discerns majority versus minority carrier photoemission, and has sensitivity to nonradiative defect centers. These are important aspects of deep level spectroscopy for NRs that are not obtainable using luminescence techniques alone. Deep level defects were observed via DLOS at Ec−2.81 eV, Ec−1.77 eV, and Ec−3.19 eV, where Ec is the conduction band minimum. The μ-PL spectra revealed a dominant defect band peaked near 2.19 eV. The Ec−2.81 eV band gap state and the 2.19 eV PL peak can be attributed to the same defect center within a one-dimensional configuration-coordinate model. The NR DLOS spectra are compared to reports for thin film GaN, and possible physical origins of the deep level defects are discussed.
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Size-dependent Photoconductivity in MBE-Grown GaN−Nanowires
Raffaella Calarco, M. Marso, T. Richter et al. · Nano Letters · 2005 · 558 citations
Semiconductors, Electrical Engineering, Photoluminescence +13
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Silvija Gradečak, Fang Qian, Yat Li et al. · Applied Physics Letters · 2005 · 463 citations
Wide-bandgap Semiconductor, Electrical Engineering, Photoluminescence +13