Polaritons in Two-Dimensional Parabolic Waveguides

T. P. Rasmussen, P. A.D. Gonçalves, Sanshui Xiao, Sebastian Hofferberth, N. Asger Mortensen, Joel D. Cox*

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Publikation: Bidrag til tidsskriftTidsskriftartikelForskningpeer review

Abstract

The suite of highly confined polaritons supported by two-dimensional (2D) materials constitutes a versatile platform for nano-optics, offering the means to channel light on deep-subwavelength scales. Graphene, in particular, has attracted considerable interest due to its ability to support long-lived plasmons that can be actively tuned via electrical gating. While the excellent optoelectronic properties of graphene are widely exploited in plasmonics, its mechanical flexibility remains relatively underexplored in the same context. Here, we present a semianalytical formalism to describe plasmons and other polaritons supported in waveguides formed by bending a 2D material into a parabolic shape. Specifically, for graphene parabolas, our theory reveals that the already large field confinement associated with graphene plasmons can be substantially increased by bending an otherwise flat graphene sheet into a parabola shape, thereby forming a plasmonic waveguide without introducing potentially lossy edge terminations via patterning. Further, we show that the high field confinement associated with such channel polaritons in 2D parabolic waveguides can enhance the spontaneous emission rate of a quantum emitter near the parabola vertex. Our findings apply generally to 2D polaritons in atomically thin materials deposited onto grooves or wedges prepared on a substrate or freely suspended in a quasi-parabolic (catenary) shape. We envision that both the optoelectronic and mechanical flexibility of 2D materials can be harnessed in tandem to produce 2D channel polaritons with versatile properties that can be applied to a wide range of nano-optics functionalities, including subwavelength polaritonic circuitry and bright single-photon sources.

OriginalsprogEngelsk
TidsskriftACS Photonics
Vol/bind8
Udgave nummer6
Sider (fra-til)1840–1846
ISSN2330-4022
DOI
StatusUdgivet - 2021

Bibliografisk note

Funding Information:
J.D.C. is a Sapere Aude research leader supported by Independent Research Fund Denmark (Grant No. 0165-00051B). S.X. acknowledges the support from Independent Research Fund Denmark (Project No. 9041-00333B). S.H. acknowledges support from the EU through ERC consolidator grant RYD-QNLO (Grant No. 771417) and the ErBeStA Project (Grant No. 800942). N.A.M. is a VILLUM Investigator supported by VILLUM FONDEN (Grant No. 16498). The Center for Nano Optics is financially supported by the University of Southern Denmark (SDU 2020 funding). The Center for Nanostructured Graphene is sponsored by the Danish National Research Foundation (Project No. DNRF103).

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