A bridge-type photonic crystal (PhC) nanocavity based on Er,O-codoped GaAs is employed to realize enhancement of Er luminescence. By adjusting the structural design and measurement temperature, the cavity mode\u27s wavelength can be coupled to Er luminescence. The peak emission intensity from an Er-2O defect center was enhanced 7.3 times at 40 nW pump power and 77 K. The experimental Q-factor is estimated to be over 1.2 x 104, and the luminescence intensity shows superlinearity with excitation power, suggesting Er luminescence amplification. This result would pave the way towards the realization of highly efficient single-photon emitters based on rare-earth elements
This dissertation presents work done on materials and novel devices made with MBE-grown Er-doped III...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
Rare earth-activated 1-D photonic crystals were fabricated by RF-sputtering technique. The cavity is...
In this work, we present some approaches recently developed for enhancing light emission from Er-bas...
In this work, we present some approaches recently developed for enhancing light emission from Er-bas...
We use photonic crystal nanocavities to enhance the light emission for Erbium implanted silicon. Th...
In recent years,Er silicates and Yttrium(Y) and Ytterbium(Yb) co-doped Er silicates have attracted i...
We introduce an Y-Er disilicate thin film deposited on top of a silicon photonic crystal cavity as a...
Erbium is a rare-earth metal that, when incorporated in a solid, can emit light at a wavelength of 1...
Since Purcell’s seminal report 75 years ago, electromagnetic resonators have been used to control li...
Author name used in this publication: Jian Hua Hao2010-2011 > Academic research: refereed > Publicat...
Erbium dopants in crystals exhibit highly coherent optical transitions well suited for solid-state o...
Enhanced Er3+ luminescence of Er silicate through Y and Yb co-doping were observed in different pump...
We introduce an Y-Er disilicate thin film deposited on top of a silicon photonic crystal cavity as a...
abstract: Integrated photonics requires high gain optical materials in the telecom wavelength range ...
This dissertation presents work done on materials and novel devices made with MBE-grown Er-doped III...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
Rare earth-activated 1-D photonic crystals were fabricated by RF-sputtering technique. The cavity is...
In this work, we present some approaches recently developed for enhancing light emission from Er-bas...
In this work, we present some approaches recently developed for enhancing light emission from Er-bas...
We use photonic crystal nanocavities to enhance the light emission for Erbium implanted silicon. Th...
In recent years,Er silicates and Yttrium(Y) and Ytterbium(Yb) co-doped Er silicates have attracted i...
We introduce an Y-Er disilicate thin film deposited on top of a silicon photonic crystal cavity as a...
Erbium is a rare-earth metal that, when incorporated in a solid, can emit light at a wavelength of 1...
Since Purcell’s seminal report 75 years ago, electromagnetic resonators have been used to control li...
Author name used in this publication: Jian Hua Hao2010-2011 > Academic research: refereed > Publicat...
Erbium dopants in crystals exhibit highly coherent optical transitions well suited for solid-state o...
Enhanced Er3+ luminescence of Er silicate through Y and Yb co-doping were observed in different pump...
We introduce an Y-Er disilicate thin film deposited on top of a silicon photonic crystal cavity as a...
abstract: Integrated photonics requires high gain optical materials in the telecom wavelength range ...
This dissertation presents work done on materials and novel devices made with MBE-grown Er-doped III...
The authors demonstrate coupling at 1.3 micro m between single InAs quantum dots (QDs) and a mode of...
Rare earth-activated 1-D photonic crystals were fabricated by RF-sputtering technique. The cavity is...