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Title: Phonon-polaritonics: enabling powerful capabilities for infrared photonics

Abstract

Abstract Here, we review the progress and most recent advances in phonon-polaritonics, an emerging and growing field that has brought about a range of powerful possibilities for mid- to far-infrared (IR) light. These extraordinary capabilities are enabled by the resonant coupling between the impinging light and the vibrations of the material lattice, known as phonon-polaritons (PhPs). These PhPs yield a characteristic optical response in certain materials, occurring within an IR spectral window known as the reststrahlen band. In particular, these materials transition in the reststrahlen band from a high-refractive-index behavior, to a near-perfect metal behavior, to a plasmonic behavior – typical of metals at optical frequencies. When anisotropic they may also possess unconventional photonic constitutive properties thought of as possible only with metamaterials. The recent surge in two-dimensional (2D) material research has also enabled PhP responses with atomically-thin materials. Such vast and extraordinary photonic responses can be utilized for a plethora of unusual effects for IR light. Examples include sub-diffraction surface wave guiding, artificial magnetism, exotic photonic dispersions, thermal emission enhancement, perfect absorption and enhanced near-field heat transfer. Finally, we discuss the tremendous potential impact of these IR functionalities for the advancement of IR sources and sensors, as well asmore » for thermal management and THz-diagnostic imaging.« less

Authors:
ORCiD logo; ; ORCiD logo; ;
Publication Date:
Research Org.:
Sandia National Lab. (SNL-NM), Albuquerque, NM (United States)
Sponsoring Org.:
USDOE National Nuclear Security Administration (NNSA)
OSTI Identifier:
1575775
Report Number(s):
SAND-2019-13788J
Journal ID: ISSN 2192-8614; 681367
Grant/Contract Number:  
AC04-94AL85000
Resource Type:
Accepted Manuscript
Journal Name:
Nanophotonics (Online)
Additional Journal Information:
Journal Name: Nanophotonics (Online); Journal Volume: 0; Journal Issue: 0; Journal ID: ISSN 2192-8614
Publisher:
de Gruyter
Country of Publication:
United States
Language:
English

Citation Formats

Foteinopoulou, Stavroula, Devarapu, Ganga Chinna Rao, Subramania, Ganapathi S., Krishna, Sanjay, and Wasserman, Daniel. Phonon-polaritonics: enabling powerful capabilities for infrared photonics. United States: N. p., 2019. Web. doi:10.1515/nanoph-2019-0232.
Foteinopoulou, Stavroula, Devarapu, Ganga Chinna Rao, Subramania, Ganapathi S., Krishna, Sanjay, & Wasserman, Daniel. Phonon-polaritonics: enabling powerful capabilities for infrared photonics. United States. https://doi.org/10.1515/nanoph-2019-0232
Foteinopoulou, Stavroula, Devarapu, Ganga Chinna Rao, Subramania, Ganapathi S., Krishna, Sanjay, and Wasserman, Daniel. Thu . "Phonon-polaritonics: enabling powerful capabilities for infrared photonics". United States. https://doi.org/10.1515/nanoph-2019-0232. https://www.osti.gov/servlets/purl/1575775.
@article{osti_1575775,
title = {Phonon-polaritonics: enabling powerful capabilities for infrared photonics},
author = {Foteinopoulou, Stavroula and Devarapu, Ganga Chinna Rao and Subramania, Ganapathi S. and Krishna, Sanjay and Wasserman, Daniel},
abstractNote = {Abstract Here, we review the progress and most recent advances in phonon-polaritonics, an emerging and growing field that has brought about a range of powerful possibilities for mid- to far-infrared (IR) light. These extraordinary capabilities are enabled by the resonant coupling between the impinging light and the vibrations of the material lattice, known as phonon-polaritons (PhPs). These PhPs yield a characteristic optical response in certain materials, occurring within an IR spectral window known as the reststrahlen band. In particular, these materials transition in the reststrahlen band from a high-refractive-index behavior, to a near-perfect metal behavior, to a plasmonic behavior – typical of metals at optical frequencies. When anisotropic they may also possess unconventional photonic constitutive properties thought of as possible only with metamaterials. The recent surge in two-dimensional (2D) material research has also enabled PhP responses with atomically-thin materials. Such vast and extraordinary photonic responses can be utilized for a plethora of unusual effects for IR light. Examples include sub-diffraction surface wave guiding, artificial magnetism, exotic photonic dispersions, thermal emission enhancement, perfect absorption and enhanced near-field heat transfer. Finally, we discuss the tremendous potential impact of these IR functionalities for the advancement of IR sources and sensors, as well as for thermal management and THz-diagnostic imaging.},
doi = {10.1515/nanoph-2019-0232},
journal = {Nanophotonics (Online)},
number = 0,
volume = 0,
place = {United States},
year = {Thu Oct 17 00:00:00 EDT 2019},
month = {Thu Oct 17 00:00:00 EDT 2019}
}

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Group-Velocity-Controlled and Gate-Tunable Directional Excitation of Polaritons in Graphene-Boron Nitride Heterostructures
journal, March 2018


All-angle negative refraction of highly squeezed plasmon and phonon polaritons in graphene–boron nitride heterostructures
journal, June 2017

  • Lin, Xiao; Yang, Yi; Rivera, Nicholas
  • Proceedings of the National Academy of Sciences
  • DOI: 10.1073/pnas.1701830114

Experimental demonstration of tunable graphene-polaritonic hyperbolic metamaterial
journal, January 2019

  • Brouillet, Jeremy; Papadakis, Georgia T.; Atwater, and Harry A.
  • Optics Express, Vol. 27, Issue 21
  • DOI: 10.1364/OE.27.030225

A 4H-SiC phonon polariton enhanced hybrid waveguide
conference, June 2016

  • Finch, Michael F.; Filho, Claudio A. B. Saunders; Premkumar, Navaneeth
  • 2016 IEEE International Symposium on Antennas and Propagation (APSURSI)
  • DOI: 10.1109/APS.2016.7696202

High Q-factor controllable phononic modes in hybrid phononic–dielectric structures
journal, April 2019


Works referencing / citing this record:

Lithography-free IR polarization converters via orthogonal in-plane phonons in a-MoO3 flakes
text, January 2020


Macroscopic QED for quantum nanophotonics: Emitter-centered modes as a minimal basis for multi-emitter problems
text, January 2020


Hybridized Hyperbolic Surface Phonon Polaritons at α-MoO 3 and Polar Dielectric Interfaces
journal, March 2021