We present an atomistic theoretical analysis of the electronic and excitonic properties of ultrathin, monolayer thick wurtzite (In,Ga)N embedded in GaN. Our microscopic investigation reveals that (i) alloy fluctuations within the monolayer lead to carrier localization effects that dominate the electronic and optical properties of these ultrathin systems and that (ii) excitonic binding energies in these structures exceed the thermal energy at room temperature, enabling excitonic effects to persist even at elevated temperatures. Our theoretical findings are consistent with, and provide an explanation for, literature experimental observations of (i) broad photoluminescence linewidth and (ii) excitonic effects contributing to the radiative reco...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
We present an atomistic theoretical analysis of the electronic and excitonic properties of ultrathin...
We investigate the emission from confined excitons in the structure of a single-monolayer-thick quas...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
Recently, structures based on ultrathin quantum wells (QWs) began to play a critical role in modern ...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Nonclassical light emission, such as entangled and single-photon emission, has attracted significant...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
We present an atomistic theoretical analysis of the electronic and excitonic properties of ultrathin...
We investigate the emission from confined excitons in the structure of a single-monolayer-thick quas...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
We report on a combined theoretical and experimental study of the impact of alloy fluctuations and C...
Recently, structures based on ultrathin quantum wells (QWs) began to play a critical role in modern ...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Nonclassical light emission, such as entangled and single-photon emission, has attracted significant...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...
Absorption and emission of pristine-like semiconducting monolayers of BN, AlN, GaN, and InN are syst...