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Subdiffractional focusing and guiding of polaritonic rays in a natural hyperbolic material

  • S. Dai
  • , Q. Ma
  • , T. Andersen
  • , A. S. McLeod
  • , Z. Fei
  • , M. K. Liu
  • , M. Wagner
  • , K. Watanabe
  • , T. Taniguchi
  • , M. Thiemens
  • , F. Keilmann
  • , P. Jarillo-Herrero
  • , M. M. Fogler
  • , D. N. Basov
  • University of California at San Diego
  • Massachusetts Institute of Technology
  • National Institute for Materials Science Tsukuba
  • Ludwig-Maximilians-Universität and Center for Nanoscience

Research output: Contribution to journalArticlepeer-review

439 Scopus citations

Abstract

Uniaxial materials whose axial and tangential permittivities have opposite signs are referred to as indefinite or hyperbolic media. In such materials, light propagation is unusual leading to novel and often non-intuitive optical phenomena. Here we report infrared nano-imaging experiments demonstrating that crystals of hexagonal boron nitride, a natural mid-infrared hyperbolic material, can act as a 'hyper-focusing lens' and as a multi-mode waveguide. The lensing is manifested by subdiffractional focusing of phonon-polaritons launched by metallic disks underneath the hexagonal boron nitride crystal. The waveguiding is revealed through the modal analysis of the periodic patterns observed around such launchers and near the sample edges. Our work opens new opportunities for anisotropic layered insulators in infrared nanophotonics complementing and potentially surpassing concurrent artificial hyperbolic materials with lower losses and higher optical localization.

Original languageEnglish
Article number6963
JournalNature Communications
Volume6
DOIs
StatePublished - Apr 22 2015

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