We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through coupling to both intrinsic and remote ( substrate) surface polar phonons using the Boltzmann equation approach. We find that the energy relaxation of hot photocarriers in graphene on commonly used polar substrates, under most conditions, is dominated by remote surface polar phonons. We also calculate key characteristics of the energy relaxation process, such as the transient cooling time and steady-state carrier temperatures and photocarrier densities, which determine the thermoelectric and photovoltaic photoresponse, respectively. Substrate engineering can be a promising route to efficient optoelectronic devices driven by hot carrier dynami...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
[[abstract]]The relaxation dynamics of photoexcited carriers in a chemical vapor deposited graphene ...
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
ICFO was supported the Generalitat de Catalunya through the CERCA program.Many promising optoelectro...
[EN]We study, by means of a Monte Carlo simulator, the hot phonon effect on the relaxation dynamics ...
Many promising optoelectronic devices, such as broadband photodetectors, nonlinear frequency convert...
peer reviewedMany promising optoelectronic devices, such as broadband photodetectors, nonlinear freq...
We present a theoretical study of photocarrier dynamics in graphene due to electron-phonon (EP) inte...
Fast carrier cooling is important for high power graphene based devices. Strongly coupled optical ph...
The conversion of light into free electron–hole pairs constitutes the key process in the fields of p...
We study the electronic cooling dynamics in a single flake of bilayer graphene by femtosecond transi...
When energy relaxation between electrons and the lattice is slow, an elevated electronic temperature...
We explore the relaxation of photoexcited graphene by solving a transient Boltzmann transport equati...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
[[abstract]]The relaxation dynamics of photoexcited carriers in a chemical vapor deposited graphene ...
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
ICFO was supported the Generalitat de Catalunya through the CERCA program.Many promising optoelectro...
[EN]We study, by means of a Monte Carlo simulator, the hot phonon effect on the relaxation dynamics ...
Many promising optoelectronic devices, such as broadband photodetectors, nonlinear frequency convert...
peer reviewedMany promising optoelectronic devices, such as broadband photodetectors, nonlinear freq...
We present a theoretical study of photocarrier dynamics in graphene due to electron-phonon (EP) inte...
Fast carrier cooling is important for high power graphene based devices. Strongly coupled optical ph...
The conversion of light into free electron–hole pairs constitutes the key process in the fields of p...
We study the electronic cooling dynamics in a single flake of bilayer graphene by femtosecond transi...
When energy relaxation between electrons and the lattice is slow, an elevated electronic temperature...
We explore the relaxation of photoexcited graphene by solving a transient Boltzmann transport equati...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
[[abstract]]The relaxation dynamics of photoexcited carriers in a chemical vapor deposited graphene ...