Hyperbolic polariton modes are highly appealing for a broad range of applications in nanophotonics, including surfaced enhanced sensing, sub-diffractional imaging and reconfigurable metasurfaces. Here we show that attenuated total reflectance micro-spectroscopy (ATR) using standard spectroscopic tools can launch hyperbolic polaritons in a Kretschmann-Raether configuration. We measure multiple hyperbolic and dielectric modes within the naturally hyperbolic material hexagonal boron nitride as a function of different isotopic enrichments and flake thickness. This overcomes the technical challenges of measurement approaches based on nanostructuring, or scattering scanning nearfield optical microscopy. Ultimately, our ATR approach allows us to compare the optical properties of small-scale materials prepared by different techniques systematically
Cite
@article{arxiv.1810.00732,
title = {Probing hyperbolic polaritons using infrared attenuated total reflectance micro-spectroscopy},
author = {Thomas G. Folland and Tobias W. W. Maß and Joseph R. Matson and J. Ryan Nolen and Song Liu and Kenji Watanabe and Takashi Taniguchi and James H. Edgar and Thomas Taubner and Joshua D. Caldwell},
journal= {arXiv preprint arXiv:1810.00732},
year = {2018}
}