Anisotropic Excitation of Surface Plasmon Polaritons on a Metal Film by a Scattering-type Scanning Near-field Microscope with a Non-rotationally-symmetric Probe Tip

Anisotropic Excitation of Surface Plasmon Polaritons on a Metal Film by a Scattering-type Scanning Near-field Microscope with a Non-rotationally-symmetric Probe Tip
Title Anisotropic Excitation of Surface Plasmon Polaritons on a Metal Film by a Scattering-type Scanning Near-field Microscope with a Non-rotationally-symmetric Probe Tip PDF eBook
Author Frederik William Walla
Publisher
Pages 0
Release 2017
Genre
ISBN

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We investigated the excitation of surface plasmon polaritons on gold films with the metallized probe tip of a scattering-type scanning near-field optical microscope (s-SNOM). The emission of the polaritons from the tip, illuminated by near-infrared laser radiation, was found to be anisotropic and not circularly symmetric as expected on the basis of literature data. We furthermore identified an additional excitation channel via light that was reflected off the tip and excited the plasmon polaritons at the edge of the metal film. Our results, while obtained for a non-rotationally-symmetric type of probe tip and thus specific for this situation, indicate that when an s-SNOM is employed for the investigation of plasmonic structures, the unintentional excitation of surface waves and anisotropic surface wave propagation must be considered in order to correctly interpret the signatures of plasmon polariton generation and propagation.

Terahertz Technology

Terahertz Technology
Title Terahertz Technology PDF eBook
Author Borwen You
Publisher BoD – Books on Demand
Pages 219
Release 2022-08-17
Genre Science
ISBN 1839626127

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Electromagnetic waves within a terahertz frequency range are becoming critical to investigating molecules, materials, and possible applications that are operated by both visible light and infrared rays. This book discusses sensing, imaging, and optoelectronic technologies of terahertz electromagnetic waves in theory and experiments. Most terahertz technologies can be explained by fundamentals of applied physics that have been demonstrated in other spectral ranges. However, the optoelectronic technology and corresponding configurations of imaging and sensing techniques are so special for various terahertz material polarization waves, which are excited in solid-state media by high-peak power lasers and waveguide transportation. Thus, this book also specifies terahertz parameters and available technologies.

Semiconductor Photonics of Nanomaterials and Quantum Structures

Semiconductor Photonics of Nanomaterials and Quantum Structures
Title Semiconductor Photonics of Nanomaterials and Quantum Structures PDF eBook
Author Arash Rahimi-Iman
Publisher Springer Nature
Pages 288
Release 2021-04-23
Genre Science
ISBN 303069352X

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This book introduces the wider field of functional nanomaterials sciences, with a strong emphasis on semiconductor photonics. Whether you are studying photonic quantum devices or just interested in semiconductor nanomaterials and their benefits for optoelectronic applications, this book offers you a pedagogical overview of the relevant subjects along with topical reviews. The book discusses different yet complementary studies in the context of ongoing international research efforts, delivering examples from both fundamental and applied research to a broad readership. In addition, a hand-full of useful optical techniques for the characterization of semiconductor quantum structures and materials are addressed. Moreover, nanostructuring methods for the production of low-dimensional systems, which exhibit advantageous properties predominantly due to quantum effects, are summarized. Science and engineering professionals in the interdisciplinary domains of nanotechnology, photonics, materials sciences, and quantum physics can familiarize themselves with selected highlights with eyes towards photonic applications in the fields of two-dimensional materials research, light–matter interactions, and quantum technologies.

Near-Field Optics and Surface Plasmon Polaritons

Near-Field Optics and Surface Plasmon Polaritons
Title Near-Field Optics and Surface Plasmon Polaritons PDF eBook
Author Satoshi Kawata
Publisher Springer Science & Business Media
Pages 216
Release 2001-06-20
Genre Medical
ISBN 3540415025

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This up-to-date overview describes in detail the physics of localized surface plasmon polaritons excited near fine metallic structures and the principles of near-field optics and microscopy related to this localized field. It also covers wider fields, from local spectroscopy to atom manipulation.

Plasmonics: Fundamentals and Applications

Plasmonics: Fundamentals and Applications
Title Plasmonics: Fundamentals and Applications PDF eBook
Author Stefan Alexander Maier
Publisher Springer Science & Business Media
Pages 234
Release 2007-05-16
Genre Technology & Engineering
ISBN 0387378251

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Considered a major field of photonics, plasmonics offers the potential to confine and guide light below the diffraction limit and promises a new generation of highly miniaturized photonic devices. This book combines a comprehensive introduction with an extensive overview of the current state of the art. Coverage includes plasmon waveguides, cavities for field-enhancement, nonlinear processes and the emerging field of active plasmonics studying interactions of surface plasmons with active media.

Surface Plasmon Nanophotonics

Surface Plasmon Nanophotonics
Title Surface Plasmon Nanophotonics PDF eBook
Author Mark L. Brongersma
Publisher Springer
Pages 270
Release 2007-09-18
Genre Science
ISBN 1402043333

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This book discusses a new class of photonic devices, known as surface plasmon nanophotonic structures. The book highlights several exciting new discoveries, while providing a clear discussion of the underlying physics, the nanofabrication issues, and the materials considerations involved in designing plasmonic devices with new functionality. Chapters written by the leaders in the field of plasmonics provide a solid background to each topic.

Excitation, Interaction, and Scattering of Localized and Propagating Surface Polaritons

Excitation, Interaction, and Scattering of Localized and Propagating Surface Polaritons
Title Excitation, Interaction, and Scattering of Localized and Propagating Surface Polaritons PDF eBook
Author
Publisher
Pages
Release 2006
Genre
ISBN

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Surface polaritons, i.e., collective oscillations of the surface charges, strongly influence the optical response at the micro- and nanoscale and have to be accounted for in modern nanotechnology. Within this thesis, certain basic phenomena involving surface polaritons are investigated by means of the semianalytical multiple-multipole (MMP) method. The results are compared to experiments. In the first part, the surface plasmon resonance (SPR) of metal nanoparticles is analyzed. This resonant collective oscillation of the free electrons in a metallic nanoparticle leads to an enhancement and confinement of the local electric field at optical frequencies. The local electric field can be further increased by tailoring the shape of the particle or by using near-field-interacting dimers or trimers of gold nanospheres. The hot spots found under such conditions increase the sensitivity of surface-enhanced Raman scattering by several orders of magnitude and simultaneously reduce the probed volume, thereby providing single-molecule sensitivity. The sub-wavelength-confined strong electromagnetic field associated with a SPR provides the basis for scattering-type near-field optical microscopy or tip-enhanced Raman spectroscopy, where the metal particle serves as a probe that is scanned laterally in the vicinity of a substrate. The presence of the latter causes a characteristic shift of the SPR towards lower frequencies. This effect originates in the near-field interaction of the surface charges on the objects. Furthermore, the excitation of higher-order modes becomes possible in case of an excitation by a strongly inhomogeneous wave, such as an evanescent wave. These modes may significantly contribute to the near field but have only very little influence on the far-field signature. Instead of using resonant probes, one may place a nonresonant probe in the vicinity of a substrate having a high density of electromagnetic surface states. This also produces a resonance of the light.