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Applied Nanophotonics, Liquid Crystals and Biomedical Optics

Prof. Ibrahim Abdulhalim Research Group

Deep gratings filled with liquid crystal as tunable photonic metamaterial

Majd Abu Aisheh, Amaljith C. Kalliyadan, Mohammad Abutoama, Marwan J. Abuleil, Ibrahim Abdulhalim

Subwavelength deep gratings are an excellent platform that exhibits several types of resonances depending on the wavelength-to-period ratio, the refractive index, and the depth, such as guided mode resonance (GMR), surface electromagnetic waves, bound in the continuum (BIC) states, Fano resonances, and more. When the period is much less than the wavelength, the gratings can be homogenized into a uniform negative uniaxial waveplate. In this work, we have shown that nematic LC material can be filled in between the grating lines to provide electro-optic and thermal tunability of resonances of tens of nanometers. The confinement in a resonant sub-micron region of 560nmX700nm sheds new light on the behavior of LC molecules in nanocavities and the possibilities for future improved design and manufacture of tunable metamaterial devices with improved performance.

Publication language English
Publication status Published - 01.01.2024

Keywords

GMR
metamaterials
nanostructures
thermal sensors
tunable photonics

ASJC Scopus subject areas

Electronic, Optical and Magnetic Materials
Condensed Matter Physics
Computer Science Applications
Applied Mathematics
Electrical and Electronic Engineering
Access to Document
10.1117/12.3022150
Other files and links
Link to publication in Scopus