Pt/SeO2 optical receivers designed for terahertz and 5G/6G technologies

LHK Alfhaid, AF Qasrawi - Physica Scripta, 2022 - iopscience.iop.org
Selenium oxide thin films are highly transparent optical layers proper for optoelectronic
technology. However, SeO 2 films are rarely studied and observed suffering from clustery …

Quantitative insights into a plasmonic ruler equation from the perspective of enhanced near field

Y Zhou, J Zhu, J Xi, K Li, W Huang - The Journal of Physical …, 2022 - ACS Publications
The plasmonic shift of resonance wavelength induced by near-field coupling enables one to
measure nanoscale distances optically. Empirically, the well-known ruler equation …

A semi-analytical decomposition analysis of surface plasmon generation and the optimal nanoledge plasmonic device

Z Zeng, MN Mendis, DH Waldeck, J Wei - RSC advances, 2016 - pubs.rsc.org
Surface plasmon resonance (SPR) of nanostructured thin metal films (so-called
nanoplasmonics) has attracted intense attention due to its versatility for optical sensing and …

Adsorption of p-nitrothiophenol on mesostructured polyoxometalate–silicate–surfactant composites containing Au nanoparticles: study of surface-enhanced Raman …

LP Wang, SC Kuo, US Jeng, YH Lai - Rsc Advances, 2015 - pubs.rsc.org
In this research, we fabricate thin-film shape-ordered mesostructured polyoxometalate–silica
composites containing Au nanoparticles (NP) at the air–water interface. With three …

New hybridization coupling mechanism and enhanced sensitivity in a Cu2− xS@ Au nanoparticle dimer

P Cao, M Liang, YY Wu, Y Li, L Cheng - Nanotechnology, 2020 - iopscience.iop.org
To improve the refractive index sensitivity of a localized surface plasmon resonance (LSPR)
sensor, we employ a new interparticle hybridization plasmon coupled resonance in a …

Metal semishell-substrate coupled structures with enlargened near-field enhancement area

P Cheng, X Li, T Li, L Wu, H Zhao, J Bao - Optical Materials Express, 2015 - opg.optica.org
Metal antennas-substrate coupled structures have unique features of strong nanoscale light
confinement and field enhancement at the gap, which make them attractive and promising in …