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Nanoantennas for visible and infrared radiation.

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TLDR
The role of plasmonic resonances on the performance of nanoantennas and the influence of geometrical parameters imposed by nanofabrication are discussed.
Abstract
Nanoantennas for visible and infrared radiation can strongly enhance the interaction of light with nanoscale matter by their ability to efficiently link propagating and spatially localized optical fields. This ability unlocks an enormous potential for applications ranging from nanoscale optical microscopy and spectroscopy over solar energy conversion, integrated optical nanocircuitry, opto-electronics and density-of-states engineering to ultra-sensing as well as enhancement of optical nonlinearities. Here we review the current understanding of metallic optical antennas based on the background of both well-developed radiowave antenna engineering and plasmonics. In particular, we discuss the role of plasmonic resonances on the performance of nanoantennas and address the influence of geometrical parameters imposed by nanofabrication. Finally, we give a brief account of the current status of the field and the major established and emerging lines of investigation in this vivid area of research.

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Citations
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Light Propagation with Phase Discontinuities: Generalized Laws of Reflection and Refraction

TL;DR: In this article, a two-dimensional array of optical resonators with spatially varying phase response and subwavelength separation can imprint phase discontinuities on propagating light as it traverses the interface between two media.
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Surface plasmon resonance in gold nanoparticles: a review.

TL;DR: The general overview of the field and the background for appropriate modelling of the physical phenomena are provided and the current state of the art and most recent applications of plasmon resonance in Au NPs are reported.
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Strong coupling between surface plasmon polaritons and emitters: a review

TL;DR: This review looks at the concepts and state-of-the-art concerning the strong coupling of surface plasmon-polariton modes to states associated with quantum emitters such as excitons in J-aggregates, dye molecules and quantum dots.
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Progress in optics

TL;DR: The last volume of the Progress in Optics series as discussed by the authors contains seven chapters on widely diverging topics, written by well-known authorities in their fields, including laser selective photophysics and photochemistry, laser phase profile generation, laser beamforming, and laser laser light emission from high-current surface spark discharges.
Journal ArticleDOI

All-dielectric optical nanoantennas

TL;DR: Control of light at the nanoscale is demanding for future successful on-chip integration and most optical nanoantennas consist of plasmonic nanoparticles due to their ability to capture and concentrate visible light at subwavelength dimensions.
References
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Journal ArticleDOI

Review on subwavelength confinement of light with plasmonics

TL;DR: An overview of the subwavelength confinement of light with plasmonics is presented in this paper, where the authors focus on the surface plasmor-assisted light enhancement via the single metallic aperture.
Journal ArticleDOI

Surface plasmon polariton modes in a single-crystal Au nanoresonator fabricated using focused-ion-beam milling

TL;DR: In this paper, focused-ion-beam milling of a single-crystal Au surface was used to fabricate a 590-nm-long linear ridge that acts as a surface plasmon nanoresonator.
Journal ArticleDOI

Gold Nanorods: From Synthesis and Properties to Biological and Biomedical Applications

TL;DR: A review of gold nanoparticles can be found in this paper, where the authors describe spontaneous self-assembly, chemically driven assembly, and polymer-based alignment of gold nanorods.
Journal ArticleDOI

Plasmonic components fabrication via nanoimprint

TL;DR: A review report on nanoimprinted plasmonic components is given in this article, where the fabrication of different metal-dielectric geometries and nanostructured surfaces that support either propagating or localized surface plasmor modes is discussed.
Book ChapterDOI

Scanning Near-field Optical Microscopy (SNOM)

TL;DR: The microscopie optique champ-proche balayage as discussed by the authors is a technique of microscopy for microscopy with tunnel balayages, which is a variant of the microscopy optique optique a balaye.
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