Complete polarization characterization of single plasmonic nanoparticle enabled by a novel Dark-field Mueller matrix spectroscopy system
Shubham Chandel, Jalpa Soni, Subir K. Ray, Anwesh Das, Anirudha Ghosh,, Satyabrata Raj, Nirmalya Ghosh

TL;DR
This paper introduces a novel dark-field Mueller matrix spectroscopic system capable of fully characterizing the polarization properties of single plasmonic nanoparticles, enabling detailed analysis of their optical responses.
Contribution
A new measurement system combining Mueller matrix spectroscopy with dark-field microscopy for accurate polarization analysis of individual plasmonic nanostructures.
Findings
Successfully measured full Mueller matrices of single gold nanorods.
Demonstrated quantitative polarization response analysis over broad wavelength range.
Enabled detailed understanding of plasmonic polarization effects.
Abstract
Information on the polarization properties of scattered light from plasmonic systems are of paramount importance due to fundamental interest and potential applications. However, such studies are severely compromised due to the experimental difficulties in recording full polarization response of plasmonic nanostructures. Here, we report on a novel Mueller matrix spectroscopic system capable of acquiring complete polarization information from single isolated plasmonic nanoparticle/nanostructure. The outstanding issues pertaining to reliable measurements of full 4X4 spectroscopic scattering Mueller matrices from single nanoparticle/nanostructures are overcome by integrating an efficient Mueller matrix measurement scheme and a robust calibration method with a dark-field microscopic spectroscopy arrangement.The spectral polarization responses of the required polarization state generator,…
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Taxonomy
TopicsGold and Silver Nanoparticles Synthesis and Applications · Plasmonic and Surface Plasmon Research · Optical Polarization and Ellipsometry
