Applied Physics Express · 2008 · 18 citations · 23 references
EngineeringOptoelectronic DevicesLuminescence PropertySemiconductorsElectronic DevicesMolecular-beam EpitaxyLight-emitting DiodesMolecular Beam EpitaxyCompound SemiconductorSemiconductor TechnologyElectrical EngineeringµM Electroluminescence IntensityPhotoluminescencePhysicsOptoelectronic MaterialsFloating-zone SiSolid-state LightingµM ElectroluminescenceApplied PhysicsOptoelectronics
We have epitaxially grown p-Si/β-FeSi2/n-Si double heterostructures light-emitting diodes (LEDs) on Si(111) substrates by molecular-beam epitaxy. The 1.6 µm electroluminescence intensity measured at room temperature (RT) was improved significantly for LEDs constructed using a thick β-FeSi2 active layer (190 nm) embedded in heavily-doped Si p–n diodes formed on floating-zone Si(111) substrates. The external quantum efficiency was increased up to approximately 0.02% at RT.
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A silicon/iron-disilicide light-emitting diode operating at a wavelength of 1.5 μm
D. Leong, M. Harry, K.J. Reeson et al. · Nature · 1997 · 717 citations · Full text
Epitaxial films of semiconducting FeSi2 on (001) silicon
John E. Mahan, K.M. Geib, G. Y. Robinson et al. · Applied Physics Letters · 1990 · 176 citations · Full text
Materials Science, Oxide Heterostructures, Semiconductors +12