Ultrafast laser measurements probe the nonequilibrium dynamics of excited electrons in metals with increasing temporal resolution. Electronic structure calculations can provide a detailed microscopic understanding of hot electron dynamics, but a parameter-free description of pump-probe measurements has not yet been possible, despite intensive research, because of the phenomenological treatment of electron-phonon interactions. We present ab initio predictions of the electron-temperature dependent heat capacities and electron-phonon coupling coefficients of plasmonic metals. We find substantial differences from free-electron and semiempirical estimates, especially in noble metals above transient electron temperatures of 2000 K, because of the...
The field of plasmonics exploits the unique optical properties of metallic nanostructures to concent...
The equilibration of electronic carriers in metals after excitation by an ultrashort laser pulse pro...
We report direct measurement of hot-electron temperatures and relaxation dynamics for peak electron...
Ultrafast laser measurements probe the nonequilibrium dynamics of excited electrons in metals with i...
The electron-phonon coupling and the corresponding energy exchange was investigated experimentally a...
International audienceFemtosecond laser irradiation is able to generate a fast heating of the electr...
International audienceThe electronic behavior of various solid metals (Al, Ni, Cu, Au, Ti, and W) un...
An experimental scheme (double pump/reflectivity probe using femtosecond laser pulses) enables the i...
Electron-phonon coupling is a fundamental process that governs the energy relaxation dynamics of sol...
Ultrafast pump-probe measurements of plasmonic nanostructures probe the nonequilibrium behavior of e...
ManuscriptWe propose a kinetic model of transient nonequilibrium phenomena in metals exposed to ultr...
International audienceUltrafast laser excitation can induce fast increases of the electronic subsyst...
The femtosecond optical pump-probe technique was used to study dynamics of photoexcited electrons an...
The field of plasmonics exploits the unique optical properties of metallic nanostructures to concent...
The equilibration of electronic carriers in metals after excitation by an ultrashort laser pulse pro...
We report direct measurement of hot-electron temperatures and relaxation dynamics for peak electron...
Ultrafast laser measurements probe the nonequilibrium dynamics of excited electrons in metals with i...
The electron-phonon coupling and the corresponding energy exchange was investigated experimentally a...
International audienceFemtosecond laser irradiation is able to generate a fast heating of the electr...
International audienceThe electronic behavior of various solid metals (Al, Ni, Cu, Au, Ti, and W) un...
An experimental scheme (double pump/reflectivity probe using femtosecond laser pulses) enables the i...
Electron-phonon coupling is a fundamental process that governs the energy relaxation dynamics of sol...
Ultrafast pump-probe measurements of plasmonic nanostructures probe the nonequilibrium behavior of e...
ManuscriptWe propose a kinetic model of transient nonequilibrium phenomena in metals exposed to ultr...
International audienceUltrafast laser excitation can induce fast increases of the electronic subsyst...
The femtosecond optical pump-probe technique was used to study dynamics of photoexcited electrons an...
The field of plasmonics exploits the unique optical properties of metallic nanostructures to concent...
The equilibration of electronic carriers in metals after excitation by an ultrashort laser pulse pro...
We report direct measurement of hot-electron temperatures and relaxation dynamics for peak electron...