Japanese Journal of Applied Physics · 2015 · 23 citations · 27 references
Electrical EngineeringWafer Scale ProcessingEngineeringEpitaxial GrowthSi WafersNanoelectronicsCompound SemiconductorApplied PhysicsSi Handle WaferSemiconductor Device FabricationPatterned Epitaxial Lift-offTransferred Gaas LayersMolecular Beam EpitaxyMicroelectronicsOptoelectronicsWafer-scale Layer TransferGaas WafersSemiconductor Device
We have developed a wafer-scale layer-transfer technique for transferring GaAs and Ge onto Si wafers of up to 300 mm in diameter. Lattice-matched GaAs or Ge layers were epitaxially grown on GaAs wafers using an AlAs release layer, which can subsequently be transferred onto a Si handle wafer via direct wafer bonding and patterned epitaxial lift-off (ELO). The crystal properties of the transferred GaAs layers were characterized by X-ray diffraction (XRD), photoluminescence, and the quality of the transferred Ge layers was characterized using Raman spectroscopy. We find that, after bonding and the wet ELO processes, the quality of the transferred GaAs and Ge layers remained the same compared to that of the as-grown epitaxial layers. Furthermore, we realized Ge-on-insulator and GaAs-on-insulator wafers by wafer-scale pattern ELO technique.
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Bonding of silicon wafers for silicon-on-insulator
W. Maszara, Georges Goetz, A.L. Caviglia et al. · Journal of Applied Physics · 1988 · 848 citations
Engineering, Crack Propagation Theory, Integrated Circuits +18
Extreme selectivity in the lift-off of epitaxial GaAs films
Eli Yablonovitch, T.J. Gmitter, J. P. Harbison et al. · Applied Physics Letters · 1987 · 801 citations · Full text
Materials Science, Wide-bandgap Semiconductor, Engineering +10
Raman Scattering by Silicon and Germanium
J. H. Parker, D. W. Feldman, M. Ashkin · Physical Review · 1967 · 632 citations