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Pump-probe Spectroscopy Study of Ultrafast Temperature Dynamics in Nanoporous Gold

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arxiv 1901.01114 v1 pith:TESKNW6F submitted 2019-01-04 cond-mat.mtrl-sci

Pump-probe Spectroscopy Study of Ultrafast Temperature Dynamics in Nanoporous Gold

classification cond-mat.mtrl-sci
keywords temperaturenanoporousgoldmathrmelectronsfilmshigherlattice
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We explore the influence of the nanoporous structure on the thermal relaxation of electrons and holes excited by ultrashort laser pulses ($\sim 7$ fs) in thin gold films. Plasmon decay into hot electron-hole pairs results in the generation of a Fermi-Dirac distribution thermalized at a temperature $T_{\mathrm{e}}$ higher than the lattice temperature $T_{\mathrm{l}}$. The relaxation times of the energy exchange between electrons and lattice, here measured by pump-probe spectroscopy, is slowed down by the nanoporous structure, resulting in much higher peak $T_{\mathrm{e}}$ than for bulk gold films. The electron-phonon coupling constant and the Debye temperature are found to scale with the metal filling factor $f$ and a two-temperature model reproduces the data. The results open the way for electron temperature control in metals by engineering of the nanoporous geometry.

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