Applied Physics Letters · 1999 · 672 citations · 11 references
Materials EngineeringMaterials ScienceEpitaxial GrowthWafer Scale ProcessingEngineeringApplied PhysicsCyclic Thermal AnnealingSemiconductor Device FabricationHigh-quality Ge EpilayersElectronic PackagingHigh-quality GeMicroelectronicsChemical Vapor DepositionSilicon On InsulatorMicrostructure
High-quality Ge epilayers on Si with low threading-dislocation densities were achieved by a two-step ultrahigh vacuum/chemical-vapor-deposition process followed by cyclic thermal annealing. On large Si wafers, Ge on Si with threading-dislocation density of 2.3×107 cm−2 was obtained. Combining selective area growth with cyclic thermal annealing produced an average threading-dislocation density of 2.3×106 cm−2.We also demonstrated small mesas of Ge on Si with no threading dislocations. The process described in this letter for making high-quality Ge on Si is uncomplicated and can be easily integrated with standard Si processes.
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Metal–semiconductor–metal near-infrared light detector based on epitaxial Ge/Si
Lorenzo Colace, G. Masini, Gaetano Assanto et al. · Applied Physics Letters · 1998 · 248 citations
Low-loss polycrystalline silicon waveguides for silicon photonics
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