ICFO was supported the Generalitat de Catalunya through the CERCA program.Many promising optoelectronic devices, such as broadband photodetectors, nonlinear frequency converters, and building blocks for data communication systems, exploit photoexcited charge carriers in graphene. For these systems, it is essential to understand the relaxation dynamics after photoexcitation. These dynamics contain a sub-100 fs thermalization phase, which occurs through carrier-carrier scattering and leads to a carrier distribution with an elevated temperature. This is followed by a picosecond cooling phase, where different phonon systems play a role: graphene acoustic and optical phonons, and substrate phonons. Here, we address the cooling pathway of two tec...
ArticleNear infrared pump-probe spectroscopy has been used to measure the ultrafast dynamics of phot...
We present a theoretical study of photocarrier dynamics in graphene due to electron-phonon (EP) inte...
When energy relaxation between electrons and the lattice is slow, an elevated electronic temperature...
Many promising optoelectronic devices, such as broadband photodetectors, nonlinear frequency convert...
peer reviewedMany promising optoelectronic devices, such as broadband photodetectors, nonlinear freq...
[EN]We study, by means of a Monte Carlo simulator, the hot phonon effect on the relaxation dynamics ...
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
[[abstract]]The relaxation dynamics of photoexcited carriers in a chemical vapor deposited graphene ...
We present a theoretical study of photocarrier dynamics in graphene due to electron-phonon (EP) inte...
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...
We study the electronic cooling dynamics in a single flake of bilayer graphene by femtosecond transi...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
Fast carrier cooling is important for high power graphene based devices. Strongly coupled optical ph...
ArticleNear infrared pump-probe spectroscopy has been used to measure the ultrafast dynamics of phot...
We present a theoretical study of photocarrier dynamics in graphene due to electron-phonon (EP) inte...
When energy relaxation between electrons and the lattice is slow, an elevated electronic temperature...
Many promising optoelectronic devices, such as broadband photodetectors, nonlinear frequency convert...
peer reviewedMany promising optoelectronic devices, such as broadband photodetectors, nonlinear freq...
[EN]We study, by means of a Monte Carlo simulator, the hot phonon effect on the relaxation dynamics ...
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
[[abstract]]The relaxation dynamics of photoexcited carriers in a chemical vapor deposited graphene ...
We present a theoretical study of photocarrier dynamics in graphene due to electron-phonon (EP) inte...
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...
We study the electronic cooling dynamics in a single flake of bilayer graphene by femtosecond transi...
Long lifetimes of hot carriers can lead to qualitatively new types of responses in materials. The ma...
We investigate the energy relaxation of hot carriers produced by photoexcitation of graphene through...
Fast carrier cooling is important for high power graphene based devices. Strongly coupled optical ph...
ArticleNear infrared pump-probe spectroscopy has been used to measure the ultrafast dynamics of phot...
We present a theoretical study of photocarrier dynamics in graphene due to electron-phonon (EP) inte...
When energy relaxation between electrons and the lattice is slow, an elevated electronic temperature...