We evaluate the spontaneous emission rate (Purcell) enhancement for optically-doped metal-dielectric-semiconductor light-emitting structures by considering the behavior of a semiclassical oscillating point dipole placed within the dielectric layer. For a Ag-SiO2-Si structure containing emitters at the center of a 20-nm-thick SiO2 layer, spontaneous emission rate enhancements of 40 to 60 can be reached in the wavelength range of 600 to 1800 nm, far away from the surface plasmon resonance; similar enhancements are also possible if Al is used instead of Ag. For dipoles contained in the thin oxide layer of a Ag-SiO2-Si-SiO2 structure, the emission exhibits strong preferential coupling to a single well-defined Si waveguide mode. This work sugges...
Copyright © 2004 American Institute of Physics. This article may be downloaded for personal use only...
We numerically investigate and experimentally demonstrate a new route to controllably manipulate the...
Plasmonic nanostructures have been widely known for their notable capability to enhance spontaneous ...
We theoretically investigate the spontaneous emission process of an optical, dipolar emitter in meta...
Optical antennas can be used to dramatically increase the rate that semiconductors spontaneously emi...
Electro luminescence from MOS structures is investigated. Broadband visible light emission is observ...
Abstract—A method for enhancing the emission properties of light-emitting diodes, by coupling to sur...
Modulation of photoluminescence of atomically thin transition metal dichalcogenide two-dimensional m...
Excitation of surface plasmons on metallic nanoparticles has potential for increasing the absorption...
A method for enhancing the emission properties of light-emitting diodes, by coupling to surface plas...
Localized surface plasmons on metallic nanoparticles can be surprisingly efficient at coupling light...
Abstract—Silicon-based photonic devices dissipate substantially less power and provide a significant...
Significant enhancement of radiative efficiency of thin-film silicon light-emitting diodes achieved ...
Plasmonic coupling of metallic nanostructures with two-dimensional molybdenum disulfide (MoS2) atomi...
We investigate the light emission properties of electrical dipole emitters inside 2-dimensional (2D)...
Copyright © 2004 American Institute of Physics. This article may be downloaded for personal use only...
We numerically investigate and experimentally demonstrate a new route to controllably manipulate the...
Plasmonic nanostructures have been widely known for their notable capability to enhance spontaneous ...
We theoretically investigate the spontaneous emission process of an optical, dipolar emitter in meta...
Optical antennas can be used to dramatically increase the rate that semiconductors spontaneously emi...
Electro luminescence from MOS structures is investigated. Broadband visible light emission is observ...
Abstract—A method for enhancing the emission properties of light-emitting diodes, by coupling to sur...
Modulation of photoluminescence of atomically thin transition metal dichalcogenide two-dimensional m...
Excitation of surface plasmons on metallic nanoparticles has potential for increasing the absorption...
A method for enhancing the emission properties of light-emitting diodes, by coupling to surface plas...
Localized surface plasmons on metallic nanoparticles can be surprisingly efficient at coupling light...
Abstract—Silicon-based photonic devices dissipate substantially less power and provide a significant...
Significant enhancement of radiative efficiency of thin-film silicon light-emitting diodes achieved ...
Plasmonic coupling of metallic nanostructures with two-dimensional molybdenum disulfide (MoS2) atomi...
We investigate the light emission properties of electrical dipole emitters inside 2-dimensional (2D)...
Copyright © 2004 American Institute of Physics. This article may be downloaded for personal use only...
We numerically investigate and experimentally demonstrate a new route to controllably manipulate the...
Plasmonic nanostructures have been widely known for their notable capability to enhance spontaneous ...