Cardiff University | Prifysgol Caerdydd ORCA
Online Research @ Cardiff 
WelshClear Cookie - decide language by browser settings

Sub-nanometer 3D morphometric precision of polarisation-resolved wide-field optical extinction microscopy determines the roundness of individual gold nanospheres

Payne, Lukas M, Alabdullah, Furqan, Borri, Paola ORCID: https://orcid.org/0000-0002-7873-3314 and Langbein, Wolfgang W. ORCID: https://orcid.org/0000-0001-9786-1023 2026. Sub-nanometer 3D morphometric precision of polarisation-resolved wide-field optical extinction microscopy determines the roundness of individual gold nanospheres. Nanoscale 10.1039/D6NR03059A

[thumbnail of d6nr03059a.pdf] PDF - Accepted Post-Print Version
Available under License Creative Commons Attribution.

Download (4MB)

Abstract

Quantitative polarisation-resolved optical extinction microscopy of individual plasmonic nanoparticles has recently been introduced as a powerful tool to characterise the nanoparticle's morphology with a precision comparable to electron microscopy, while using a simple optical microscope [Nanoscale 12, 16215 (2020)]. Here we provide a step change by adding measurements for radial polarisation in the condenser back focal plane, probing plasmonic resonances polarised in axial direction. The combined linear and radial polarisation measurements provide a significantly enhanced precision of the retrieved 3D morphology, as we show on defect-free ultra-uniform gold nanospheres of 30 nm nominal diameter characterised by transmission electron microscopy. The measured cross-sections are modelled for an ellipsoidal particle, determining the three semi-axes and rotation angles by fitting the measurements. The material permittivity and surface damping providing the best fit are found. The particle aspect ratio is determined with a precision better than 5%, and the size with an impressive precision of 0.1 nm. Notably, corrections to the Rayleigh-Gans ellipsoid model due to retardation are significant even though the particle diameters are more than an order of magnitude smaller than the wavelength in the medium, and taking them into account improves the shape accuracy.

Item Type: Article
Date Type: Published Online
Status: In Press
Schools: Schools > Physics and Astronomy
Schools > Physical, Chemical & Environmental Sciences
Publisher: Royal Society of Chemistry
ISSN: 2040-3364
Date of First Compliant Deposit: 24 September 2026
Date of Acceptance: 28 August 2026
Last Modified: 24 Sep 2026 12:30
URI: https://orca.cardiff.ac.uk/id/eprint/189790

Actions (repository staff only)

Edit Item Edit Item

Downloads

Downloads per month over past year

View more statistics