Abstract—A method for enhancing the emission properties of light-emitting diodes, by coupling to surface plasmons, is analyzed both theoretically and experimentally. The analyzed structure consists of a semiconductor emitter layer thinner than 2 sandwiched between two metal films. If a periodic pattern is defined in the top semitransparent metal layer by lithography, it is possible to efficiently couple out the light emitted from the semiconductor and to simultaneously enhance the spontaneous emission rate. For the analyzed designs, we theoretically estimate extraction efficiencies as high as 37 % and Purcell factors of up to 4.5. We have experimentally measured photoluminescence inten-sities of up to 46 times higher in fabricated structure...
We evaluate the spontaneous emission rate (Purcell) enhancement for optically-doped metal-dielectric...
Summary form only given. We designed and fabricated an LED based on a thin semiconductor membrane (λ...
We studied the practicable alleviation of efficiency droop effect in GaN-based light emitting diodes...
Abstract—A method for enhancing the emission properties of light-emitting diodes, by coupling to sur...
A method for enhancing the emission properties of light-emitting diodes, by coupling to surface plas...
The extraction of light from current light emitting diodes (LEDs) is very low due to the large index...
In this letter the authors describe a particular method to outcouple in air, via surface plasmons (S...
Abstract A novel method to enhance light emission efficiencies from solid-state materials was develo...
Abstract Light-emitting diodes [LEDs] are of particular interest recently as their performance is ap...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2003.This thesis discusses the us...
Since 1993, InGaN light-emitting diodes (LEDs) have been improved and commercialized, but these devi...
Blue-green light-emitting diodes improve efficiencies by 25–120%. Although tremendous progress has b...
The authors develop a rigorous theory of the enhancement of spontaneous emission from a light emitti...
Optical antennas can be used to dramatically increase the rate that semiconductors spontaneously emi...
Abstract—We demonstrate the numerical study results of the enhancements of internal quantum efficien...
We evaluate the spontaneous emission rate (Purcell) enhancement for optically-doped metal-dielectric...
Summary form only given. We designed and fabricated an LED based on a thin semiconductor membrane (λ...
We studied the practicable alleviation of efficiency droop effect in GaN-based light emitting diodes...
Abstract—A method for enhancing the emission properties of light-emitting diodes, by coupling to sur...
A method for enhancing the emission properties of light-emitting diodes, by coupling to surface plas...
The extraction of light from current light emitting diodes (LEDs) is very low due to the large index...
In this letter the authors describe a particular method to outcouple in air, via surface plasmons (S...
Abstract A novel method to enhance light emission efficiencies from solid-state materials was develo...
Abstract Light-emitting diodes [LEDs] are of particular interest recently as their performance is ap...
Thesis (Ph. D.)--University of Rochester. The Institute of Optics, 2003.This thesis discusses the us...
Since 1993, InGaN light-emitting diodes (LEDs) have been improved and commercialized, but these devi...
Blue-green light-emitting diodes improve efficiencies by 25–120%. Although tremendous progress has b...
The authors develop a rigorous theory of the enhancement of spontaneous emission from a light emitti...
Optical antennas can be used to dramatically increase the rate that semiconductors spontaneously emi...
Abstract—We demonstrate the numerical study results of the enhancements of internal quantum efficien...
We evaluate the spontaneous emission rate (Purcell) enhancement for optically-doped metal-dielectric...
Summary form only given. We designed and fabricated an LED based on a thin semiconductor membrane (λ...
We studied the practicable alleviation of efficiency droop effect in GaN-based light emitting diodes...