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Published on: September 2, 2017
Ultrathin Wetting Layer-Free Plasmonic Gold Films
Robert Lemasters1, Cheng Zhang2,3, Manoj Manjare1
1Department of Physics, Emory University, Atlanta, GA, 30322, USA.
Abstract:
Ultrathin gold films are attractive for plasmonic and metamaterial devices, thanks to their useful optical and optoelectronic properties. However, deposition of ultrathin continuous Au films of few nanometer thickness is challenging and generally requires wetting layers, resulting in increased optical losses and incompatibility with optoelectronic device requirements. We demonstrate wetting layer-free plasmonic gold films with thicknesses down to 3 nm obtained by deposition on substrates cooled to cryogenic temperatures. We systematically study the effect of substrate temperature on the properties of the deposited Au films, and show that substrate cooling suppresses the Vomer-Webber growth mode of Au, promoting early-stage formation of continuous Au films with improved surface morphology and enhanced optoelectronic properties. Our results pave the way for straightforward implementation of ultrathin Au-based optoelectronic and plasmonic devices, as well as metamaterials and metasurfaces.

