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Journal article

Perfect imaging, epsilon-near zero phenomena and waveguiding in the scope of nonlocal effects

From

Structured Electromagnetic Materials, Department of Photonics Engineering, Technical University of Denmark1

Department of Photonics Engineering, Technical University of Denmark2

Center for Nanostructured Graphene, Centers, Technical University of Denmark3

Plasmons in metals can oscillate on a sub-wavelength length scale and this large-k response constitutes an inherent prerequisite for fascinating effects such as perfect imaging and intriguing wave phenomena associated with the epsilon-near-zero (ENZ) regime. While there is no upper cut-off within the local-response approximation (LRA) of the plasma polarization, nonlocal dynamics suppress response beyond ω/vF, where vF is the Fermi velocity of the electron gas.

Nonlocal response has previously been found to pose limitations to field-enhancement phenomena. Accounting for nonlocal hydrodynamic response, we show that perfect imaging is surprisingly only marginally affected by nonlocal properties of a metal slab, even for a deep subwavelength case and an extremely thin film.

Similarly, for the ENZ response we find no indications of nonlocal response jeopardizing the basic behaviors anticipated from the LRA. Finally, our study of waveguiding of gap plasmons even shows a positive nonlocal influence on the propagation length.

Language: English
Publisher: Nature Publishing Group
Year: 2013
Pages: 2526
ISSN: 20452322
Types: Journal article
DOI: 10.1038/srep02526
ORCIDs: Mortensen, N. Asger

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