Optical gain in silicon nanocrystals
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Summary
It is demonstrated that light amplification is possible using silicon itself, in the form of quantum dots dispersed in a silicon dioxide matrix, which opens a route to the fabrication of a silicon laser.
- Type
- article
- Published
- 2000-11-23
- Cited by
- 2,188
- References
- 36
- OpenAlex
- https://openalex.org/W1598285744
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1847865
Keywords
Optoelectronics, Silicon, Hybrid silicon laser, Microelectronics, Materials science
References
- Silicon-Based Microphotonics : from Basics to Applications, Varenna on Lake Como, Villa Monastero, 21-31 July 1998
- Frontiers of Nano-Optoelectronic Systems
- Quantum confinement and light emission in SiO2/Si superlattices
- On the dimensionality of optical absorption, gain, and recombination in quantum-confined structures
- Silicon-based optoelectronics
- PHONON STRUCTURES AND STOKES SHIFT IN RESONANTLY EXCITED LUMINESCENCE OF SILICON NANOCRYSTALS
- Visible light emission due to quantum size effects in highly porous crystalline silicon
- A silicon/iron-disilicide light-emitting diode operating at a wavelength of 1.5 μm
- The integration of nanoscale porous silicon light emitters: materials science, properties, and integration with electronic circuitry
- The femtosecond optical response of porous, amorphous and crystalline silicon
- Optical absorption cross sections of Si nanocrystals
- Silicon sees the light
- ELECTROLUMINESCENT DEVICE BASED ON SILICON NANOPILLARS
- Quantum confinement and interface effects on photoluminescence from silicon single quantum wells
- Correlation between luminescence and structural properties of Si nanocrystals
- Porous silicon: a quantum sponge structure for silicon based optoelectronics
- Dynamics of amplified spontaneous emission in InAs/GaAs quantum dots
- Room‐temperature electroluminescence from Er‐doped crystalline Si
- Quantum Confinement in Size-Selected, Surface-Oxidized Silicon Nanocrystals
- Optical gain in semiconductors
Cited by
- Optically pumped Si nanocrystal emitter integrated with low loss silicon nitride waveguides.
- Enhanced electroluminescence from SiN-based multilayer structure by laser crystallization of ultrathin amorphous Si-rich SiN layers.
- Size- and doping-dependent time-resolved photoluminescence of doped Si nanocrystals
- Size-dependent visible absorption and fast photoluminescence decay dynamics from freestanding strained silicon nanocrystals
- Enhanced electron-hole droplet emission from surface-oxidized silicon photonic crystal nanocavities.
- Localized Synthesis of Silicon Nanocrystals in Silicon-rich SiO2 by CO2 Laser Annealing
- Selective Epitaxy of Indium Phosphide and Heteroepitaxy of Indium Phosphide on Silicon for Monolithic Integration
- Addressing Fiber-to-Chip Coupling Issues in Silicon Photonics
- Room temperature multilayer luminescent silicon nanocrystals
- Study of Luminescent Silicon-Rich Silicon Nitride and Cerium and Terbium Doped Silicon Oxide Thin Films
- Verspannungsgetriebene Architekturen auf der Basis von Si-Nanomembranen
- Ge–Si and Si–Ge core–shell nanocrystals: Theoretical study
- Nano-Optoelectronic Integration on Silicon
- Blue to red emission from as-deposited nc-silicon/silicon dioxide by hot wire chemical vapor deposition
- Silicon Photonics Design: From Devices to Systems
- Silicon-based Nanomaterials
- Optically active Si-rich Si3N4 Mu-cavities for sensoristic applications
- Atomistic study of structural and electronic transport properties of silicon quantum dots for optoelectronic applications
- Stimulated Raman Scattering in Semiconductor Nanostructures
- Realistic Modeling of Nanostructures Using Density Functional Theory
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