Experimental and ab initio ultrafast carrier dynamics in plasmonic nanoparticles
Abstract
Ultrafast pump-probe measurements of plasmonic nanostructures probe the non-equilibrium 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 which allow us to avoid effective electron temperature approximations. Using this calculation method, we obtain excellent quantitative agreement with spectral and temporal features in transient-absorption measurements. In both our experiments and calculations, we identify the two major contributions of the initial response with distinct signatures: short-lived highly non-thermal excited carriers and longer-lived thermalizing carriers.
Keywords
Cite
@article{arxiv.1608.03309,
title = {Experimental and ab initio ultrafast carrier dynamics in plasmonic nanoparticles},
author = {Ana M. Brown and Ravishankar Sundararaman and Prineha Narang and Adam M. Schwartzberg and William A. Goddard and Harry A. Atwater},
journal= {arXiv preprint arXiv:1608.03309},
year = {2017}
}
Comments
Supplementary information available as SI.pdf in source