Morphology-modified contributions of electronic transitions to the optical response of plasmonic nanoporous gold metamaterial

T Tlek Tapani J Jonas M. Pettersson N Nils Henriksson C Carla M. Brunner (Max Plank Institute for the Science of Light, Staudtstr. 2, Erlangen 91058, Germany) A Ann Céline Zimmermann E Erik Zäll N Nils V. Hauff L Lakshmi Das A Anastasiia Sapunova G Gianluca Balestra M Massimo Cuscunà A Aitor De Andrés T Tommaso Giovannini (Department of Physics, University of Rome Tor Vergata and INFN 6 , Via della Ricerca Scientifica 1, 00133 Rome,) D Denis Garoli N Nicolò Maccaferri

Abstract

Abstract Nanoporous metals have emerged as promising functional architectures with tunable optical and electronic properties, high surface areas, and applicability in sensing, catalysis, and biomedicine. While their linear optical behavior and morphological properties have been extensively studied, the electronic properties, and in particular how they are affected by morphology, remain not fully understood. Here we combine experimental and theoretical studies of electronic excitation and relaxation in a nanoporous gold metamaterial. Optical pump–probe experiments show slower electron relaxation dynamics compared to the continuous film, consistent with a higher transient electronic temperature and stronger smearing of the Fermi–Dirac distribution, well reproduced by an extended two-temperature model. Furthermore, cathodoluminescence measurements reveal broadband localized plasmon resonances, and atomistic simulations disentangle intra- and interband effects, demonstrating that nanoscale porosity fundamentally reshapes the electronic response. These findings support nanoporosity as a key design parameter for controlling steady-state and ultrafast optical behavior in plasmonic materials.

Article Details

Volume / Issue Vol. 17, Issue 1
Published January 20, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (15)

T

Tlek Tapani

J

Jonas M. Pettersson

N

Nils Henriksson

C

Carla M. Brunner

Max Plank Institute for the Science of Light, Staudtstr. 2, Erlangen 91058, Germany

A

Ann Céline Zimmermann

E

Erik Zäll

N

Nils V. Hauff

L

Lakshmi Das

A

Anastasiia Sapunova

G

Gianluca Balestra

M

Massimo Cuscunà

A

Aitor De Andrés

T

Tommaso Giovannini

Department of Physics, University of Rome Tor Vergata and INFN 6 , Via della Ricerca Scientifica 1, 00133 Rome,

D

Denis Garoli

N

Nicolò Maccaferri