Highly confined incident-angle-robust surface phonon polariton bound states in the continuum metasurfaces

Fuente: arXiv
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Main Authors: Nan, Lin, Mancini, Andrea, Weber, Thomas, Seah, Geok Leng, Cortés, Emiliano, Tittl, Andreas, Maier, Stefan A.
Format: Preprint
Published: 2024
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_version_ 1866909152960315392
author Nan, Lin
Mancini, Andrea
Weber, Thomas
Seah, Geok Leng
Cortés, Emiliano
Tittl, Andreas
Maier, Stefan A.
author_facet Nan, Lin
Mancini, Andrea
Weber, Thomas
Seah, Geok Leng
Cortés, Emiliano
Tittl, Andreas
Maier, Stefan A.
contents Squeezing light into subwavelength dimensions is vital for on-chip integration of photonic technologies. One approach to overcome the diffraction limit is coupling light to material excitations, leading to polariton states. Here, we showcase how low-loss mid-infrared surface phonon polaritons enable metasurfaces supporting quasi-bound states in the continuum (qBICs) with deeply subwavelength unit cells. Utilizing 100 nm thick free-standing silicon carbide membranes, we achieve highly confined qBIC states with a unit cell volume ~ 10^4 times smaller than the diffraction limit. This results in remarkable robustness of the platform against the incident angle that is unique among qBIC systems. We also demonstrate vibrational strong coupling with a thin layer of spin-coated molecules, leveraging the small mode volume. This work introduces phononic qBICs as a novel ultra-confined nanophotonic platform, paving a way for the miniaturization of mid-infrared devices for molecular sensing and thermal radiation engineering.
format Preprint
id arxiv_https___arxiv_org_abs_2403_18743
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Highly confined incident-angle-robust surface phonon polariton bound states in the continuum metasurfaces
Nan, Lin
Mancini, Andrea
Weber, Thomas
Seah, Geok Leng
Cortés, Emiliano
Tittl, Andreas
Maier, Stefan A.
Optics
Materials Science
Squeezing light into subwavelength dimensions is vital for on-chip integration of photonic technologies. One approach to overcome the diffraction limit is coupling light to material excitations, leading to polariton states. Here, we showcase how low-loss mid-infrared surface phonon polaritons enable metasurfaces supporting quasi-bound states in the continuum (qBICs) with deeply subwavelength unit cells. Utilizing 100 nm thick free-standing silicon carbide membranes, we achieve highly confined qBIC states with a unit cell volume ~ 10^4 times smaller than the diffraction limit. This results in remarkable robustness of the platform against the incident angle that is unique among qBIC systems. We also demonstrate vibrational strong coupling with a thin layer of spin-coated molecules, leveraging the small mode volume. This work introduces phononic qBICs as a novel ultra-confined nanophotonic platform, paving a way for the miniaturization of mid-infrared devices for molecular sensing and thermal radiation engineering.
title Highly confined incident-angle-robust surface phonon polariton bound states in the continuum metasurfaces
topic Optics
Materials Science
url https://arxiv.org/abs/2403.18743