Few-atom-thick silver films for enhanced nanoscale nonlinear optics

P Philipp K. Jenke S Saad Abdullah A Andrew P. Weber Álvaro Rodríguez Echarri F Fadil Iyikanat V Vahagn Mkhitaryan F Frederik Schiller (Centro de Física de Materiales CSIC/UPV-EHU-Materials Physics Center, Manuel Lardizábal 5, 20018 San Sebastián, Spain) J J. Enrique Ortega (Departamento Física Aplicada) P Philip Walther F F. Javier García de Abajo L Lee A. Rozema

Abstract

Abstract The inherently weak nonlinear optical response of bulk materials remains a fundamental limitation in advancing photonic technologies. Nanophotonics addresses this challenge by tailoring the size and morphology of nanostructures to manipulate the optical near field, thus modulating the nonlinear response. Here, we explore a complementary strategy based on engineering the electronic band structure in the mesoscopic regime to enhance optical nonlinearities. Specifically, we demonstrate an increase in second-harmonic generation (SHG) from crystalline silver films as their thickness is reduced down to just a few atomic monolayers. Operating at the boundary between bulk and two-dimensional systems, these ultra-thin films exhibit a pronounced enhancement of SHG with decreasing thickness. This enhancement stems from quantum confinement effects that modify the interaction between electronic states and incident light, which we explain based on quantum-mechanical calculation. Our atomically-thin crystalline silver films provide a new means to overcome the small interaction volumes inherent to nanophotonic platforms, enabling efficient nanoscale nonlinear optics with potential applications in photonics, sensing, and quantum technologies.

Article Details

Volume / Issue Vol. 1, Issue 1
Published July 01, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (11)

P

Philipp K. Jenke

S

Saad Abdullah

A

Andrew P. Weber

Álvaro Rodríguez Echarri

F

Fadil Iyikanat

V

Vahagn Mkhitaryan

F

Frederik Schiller

Centro de Física de Materiales CSIC/UPV-EHU-Materials Physics Center, Manuel Lardizábal 5, 20018 San Sebastián, Spain

J

J. Enrique Ortega

Departamento Física Aplicada

P

Philip Walther

F

F. Javier García de Abajo

L

Lee A. Rozema