Journal of Applied Physics · 2003 · 107 citations · 38 references
Wide-bandgap SemiconductorAluminium NitrideEngineeringSemiconductor NanostructuresSemiconductorsQuantum MaterialsStranski–krastanow ” ConditionsMaterials SciencePhysicsNanotechnologyAluminum Gallium NitrideGan IslandsCategoryiii-v SemiconductorElectronic MaterialsSurface ScienceCondensed Matter PhysicsApplied PhysicsGan Power DeviceGan Quantum DotsGa Surfactant Effect
We propose a procedure to grow GaN quantum dots (QDs) on AlN by using the Ga surfactant effect in plasma-assisted molecular beam epitaxy. Self-formed GaN islands were spontaneously generated under vacuum, after evaporation of the Ga bilayer stabilizing the two-dimensional GaN layer grown under Ga-rich conditions. Island characteristics (size and density) are studied as a function of the nominal amount of GaN deposited. We demonstrate that the QD density can be controlled in the 3×1010 cm−2–2×1011 cm−2 range. It is shown that beyond a given amount of GaN nominally deposited, there is a coexistence between elastic and plastic relaxation, with GaN islands being formed on a partially relaxed two-dimensional GaN layer thicker than two monolayers.
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Kinetic pathway in Stranski-Krastanov growth of Ge on Si(001)
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