Ultrafast pump-probe measurements of plasmonic nanostructures probe the nonequilibrium behavior of excited carriers, which involves several competing effects obscured in typical empirical analyses. Here we present pump-probe measurements of plasmonic nanoparticles along with a complete theoretical description based on first-principles calculations of carrier dynamics and optical response, free of any fitting parameters. We account for detailed electronic-structure effects in the density of states, excited carrier distributions, electron-phonon coupling, and dielectric functions that allow us to avoid effective electron temperature approximations. Using this calculation method, we obtain excellent quantitative agreement with spectral and tem...
Recently, there has been significant interest in harnessing hot carriers generated from the decay of...
Owing to the ultrashort timescales of ballistic electron transport, relaxation dynamics of hot noneq...
International audienceWe demonstrate that ultrafast carrier excitation can drastically affect electr...
Ultrafast pump-probe measurements of plasmonic nanostructures probe the nonequilibrium behavior of e...
Ultrafast pump-probe measurements of plasmonic nanostructures probe the nonequilibrium behavior of e...
The field of plasmonics exploits the unique optical properties of metallic nanostructures to concent...
Ultrafast laser measurements probe the nonequilibrium dynamics of excited electrons in metals with i...
The transient optical response of gold nanorods is investigated beyond the perturbative regime. Ultr...
Metallic nanostructures exhibit localized surface plasmons (LSPs), which offer unprecedented opportu...
The transient optical response of plasmonic nanostructures has recently been the focus of extensive ...
Abstract Metallic nanostructures exhibit localized surface plasmons (LSPs), which off...
Plasmonic hot carrier devices extract excited carriers from metal nanostructures before equilibratio...
Efficient excitation and harvesting of hot carriers are central to a variety of emerging nanoplasmon...
The study of nonthermal electrons, generated upon photoexcitation of plasmonic nanostructures, plays...
Recently, there has been significant interest in harnessing hot carriers generated from the decay of...
Owing to the ultrashort timescales of ballistic electron transport, relaxation dynamics of hot noneq...
International audienceWe demonstrate that ultrafast carrier excitation can drastically affect electr...
Ultrafast pump-probe measurements of plasmonic nanostructures probe the nonequilibrium behavior of e...
Ultrafast pump-probe measurements of plasmonic nanostructures probe the nonequilibrium behavior of e...
The field of plasmonics exploits the unique optical properties of metallic nanostructures to concent...
Ultrafast laser measurements probe the nonequilibrium dynamics of excited electrons in metals with i...
The transient optical response of gold nanorods is investigated beyond the perturbative regime. Ultr...
Metallic nanostructures exhibit localized surface plasmons (LSPs), which offer unprecedented opportu...
The transient optical response of plasmonic nanostructures has recently been the focus of extensive ...
Abstract Metallic nanostructures exhibit localized surface plasmons (LSPs), which off...
Plasmonic hot carrier devices extract excited carriers from metal nanostructures before equilibratio...
Efficient excitation and harvesting of hot carriers are central to a variety of emerging nanoplasmon...
The study of nonthermal electrons, generated upon photoexcitation of plasmonic nanostructures, plays...
Recently, there has been significant interest in harnessing hot carriers generated from the decay of...
Owing to the ultrashort timescales of ballistic electron transport, relaxation dynamics of hot noneq...
International audienceWe demonstrate that ultrafast carrier excitation can drastically affect electr...