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Tomographic measurement of dielectric tensors at optical frequency

Authors :
Seungwoo Shin
Jonghee Eun
Sang Seok Lee
Changjae Lee
Herve Hugonnet
Dong Ki Yoon
Shin-Hyun Kim
Joonwoo Jeong
YongKeun Park
Source :
Nature materials. 21(3)
Publication Year :
2021

Abstract

The dielectric tensor is a physical descriptor of fundamental light-matter interactions, characterizing anisotropic materials with principal refractive indices and optic axes. Despite its importance in scientific and industrial applications ranging from material science to soft matter physics, the direct measurement of the three-dimensional dielectric tensor has been limited by the vectorial and inhomogeneous nature of light scattering from anisotropic materials. Here, we present a dielectric tensor tomographic approach to directly measure dielectric tensors of anisotropic structures including the spatial variations of principal refractive indices and directors. The anisotropic structure is illuminated with a polarized plane wave with various angles and polarization states. Then, the scattered fields are holographically measured and converted into vectorial diffracted field components. Finally, by inversely solving a vectorial wave equation, the three-dimensional dielectric tensor is reconstructed. Using this approach, we demonstrate quantitative tomographic measurements of various nematic liquid-crystal structures and their fast three-dimensional non-equilibrium dynamics.

Details

ISSN :
14764660
Volume :
21
Issue :
3
Database :
OpenAIRE
Journal :
Nature materials
Accession number :
edsair.doi.dedup.....87a7ed2a8f50c7ab3177f088d7536f9c