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Effects of thin heavily Mg-doped GaN capping layer on ohmic contact formation of p-type GaN
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Citations
16
References
2013
Year
Materials ScienceWide-bandgap SemiconductorElectrical EngineeringEngineeringSurface ScienceApplied PhysicsMg-doped GanAluminum Gallium NitrideGan Power DeviceCategoryiii-v SemiconductorOhmic Contact FormationP-type GanExcessive Mg Doping
The growth condition of thin heavily Mg-doped GaN capping layer and its effect on ohmic contact formation of p-type GaN were investigated. It is confirmed that the excessive Mg doping can effectively enhance the Ni/Au contact to p-GaN after annealing at 550 °C. When the flow rate ratio between Mg and Ga gas sources is 6.4% and the layer width is 25 nm, the capping layer grown at 850 °C exhibits the best ohmic contact properties with respect to the specific contact resistivity (ρc). This temperature is much lower than the conventional growth temperature of Mg-doped GaN, suggesting that the deep-level-defect induced band may play an important role in the conduction of capping layer.
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