Journal of Applied Physics · 2008 · 33 citations · 17 references
Materials ScienceMaterials EngineeringGermanium ConcentrationEngineeringDislocation InteractionNanoelectronicsApplied PhysicsCzochralski Silicon WafersMechanical StrengthWafer WarpageSemiconductor MaterialSemiconductor Device FabricationDefect FormationSilicon On InsulatorMicroelectronicsMicrostructureSemiconductor DeviceGermanium Doping
The mechanical strength in germanium-doped Czochralski silicon (GCz-Si) wafers has been investigated through the on-line warpage statistics analysis, indentation tests, and fracture structure measurements. It was found that the wafer warpage during manufacturing processes could be statistically suppressed by the germanium doping slightly. The enhancement effect of germanium doping on the mechanical strength in GCz-Si wafers could be shown obviously when the germanium concentration was higher than 1018cm−3. Meanwhile, the fracture strength for both the as-grown and the postannealed GCz-Si wafers might be greater compared to that of the conventional Czochralski (Cz-Si) wafers. Moreover, the generation and mobilization of the dislocations induced by indentation in Cz-Si wafers could be suppressed by the germanium doping. These phenomena are interpreted through a dislocation pinning-up effect associated with the smaller-sized higher-density oxygen precipitates formed in GCz-Si wafers.
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Oxygen precipitation in silicon
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Oxygen precipitation in silicon
W. Patrick, E. E. Hearn, W. A. Westdorp et al. · Journal of Applied Physics · 1979 · 440 citations
Germanium effect on void defects in Czochralski silicon
Deren Yang, Xuegong Yu, Xiangyang Ma et al. · Journal of Crystal Growth · 2002 · 50 citations