Experimental Observation of Dyakonov Plasmons in the Mid-Infrared


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Abstract

In this work, we report on observation of Dyakonov plasmons at an interface with a hyperbolic metamaterial in the mid-IR. The hyperbolic metamaterial is implemented as a CMOS-compatible high aspect ratio grating structure with aluminium-doped ZnO (AZO) ridges grown by atomic layer deposition in deep trench silicon matrix. The dispersion of Dyakonov plasmons is characterized by the attenuated total reflection method in the Otto configuration. We demonstrate that Dyakonov plasmons propagate in a broad range of directions (a few tens of degrees) in contrast to the classical Dyakonov surface waves (about one tenth of degree). The obtained results provide useful guidelines for practical implementations of structures supporting Dyakonov plasmons in the mid-IR.

About the authors

O. Takayama

DTU Fotonik—Department of Photonics Engineering

Email: bogdanov@mail.ioffe.ru
Denmark, Copenhagen, DK-2800

P. Dmitriev

Department of Nanophotonics and Metamaterials

Email: bogdanov@mail.ioffe.ru
Russian Federation, St. Petersburg, 197101

E. Shkondin

DTU Fotonik—Department of Photonics Engineering; DTU Danchip—National Center for Micro- and Nanofabrication

Email: bogdanov@mail.ioffe.ru
Denmark, Copenhagen, DK-2800; Copenhagen, DK-2800

O. Yermakov

Department of Nanophotonics and Metamaterials

Email: bogdanov@mail.ioffe.ru
Russian Federation, St. Petersburg, 197101

M. Panah

Department of Nanophotonics and Metamaterials

Email: bogdanov@mail.ioffe.ru
Russian Federation, St. Petersburg, 197101

K. Golenitskii

Ioffe Institute

Email: bogdanov@mail.ioffe.ru
Russian Federation, St. Petersburg, 194021

F. Jensen

DTU Danchip—National Center for Micro- and Nanofabrication

Email: bogdanov@mail.ioffe.ru
Denmark, Copenhagen, DK-2800

A. Bogdanov

Department of Nanophotonics and Metamaterials; Ioffe Institute

Author for correspondence.
Email: bogdanov@mail.ioffe.ru
Russian Federation, St. Petersburg, 197101; St. Petersburg, 194021

A. Lavrinenko

DTU Fotonik—Department of Photonics Engineering; Department of Nanophotonics and Metamaterials

Email: bogdanov@mail.ioffe.ru
Denmark, Copenhagen, DK-2800; St. Petersburg, 197101


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