Optical Characterization of Plasmonic Nanostructures: Near-Field Imaging of the Magnetic Field of Light

(Autor)

Buch | Hardcover
XXVI, 88 Seiten
2016 | 1st ed. 2016
Springer International Publishing (Verlag)
978-3-319-28792-8 (ISBN)

Lese- und Medienproben

Optical Characterization of Plasmonic Nanostructures: Near-Field Imaging of the Magnetic Field of Light - Denitza Denkova
117,69 inkl. MwSt

This thesis focuses on a means of obtaining, for the first time, full electromagnetic imaging of photonic nanostructures. The author also develops a unique practical simulation framework which is used to confirm the results.

The development of innovative photonic devices and metamaterials with tailor-made functionalities depends critically on our capability to characterize them and understand the underlying light-matter interactions. Thus, imaging all components of the electromagnetic light field at nanoscale resolution is of paramount importance in this area. This challenge is answered by demonstrating experimentally that a hollow-pyramid aperture probe SNOM can directly image the horizontal magnetic field of light in simple plasmonic antennas - rod, disk and ring. These results are confirmed by numerical simulations, showing that the probe can be approximated, to first order, by a magnetic point-dipole source. This approximation substantially reduces the simulation time and complexity and facilitates the otherwise controversial interpretation of near-field images. The validated technique is used to study complex plasmonic antennas and to explore new opportunities for their engineering and characterization.

Denitza Denkova completed her Bachelor (2008) and Master (2010) studies in Physics at Sofia University, Bulgaria. During her studies she also worked part-time as an engineer at Melexis, a microelectronics company. In a joint project between these institutions she studied specific malfunctions in microelectronics circuits via various structural, optical and electrical characterization techniques, including the development of a cathodoluminescence add-on to a scanning electron microscope. Denitza then moved to KU Leuven, Belgium to further develop her interest in nanoscale characterization as a PhD. There she developed and applied a novel approach for imaging the magnetic field of light with nanoscale resolution, in the context of characterization of plasmonic and metamaterial devices.

Introduction.- Imaging the Magnetic Near-field of Plasmon Modes in Bar Antennas.- A Near-Field-Aperture Probe as an Optical Magnetic Source and Detector .- Magnetic Near-Field Imaging of Increasingly Complex Plasmonic Antennas.- Plasmon-Enhanced Sub-wavelength Laser Ablation: Plasmonic Nano-Jets.- Conclusions and Outlook.

Erscheinungsdatum
Reihe/Serie Springer Theses
Zusatzinfo XXVI, 88 p. 36 illus., 35 illus. in color.
Verlagsort Cham
Sprache englisch
Maße 155 x 235 mm
Themenwelt Naturwissenschaften Physik / Astronomie Optik
Technik Elektrotechnik / Energietechnik
Schlagworte light-matter interaction • nanoscale science and technology • nanotechnology • Near-field Imaging • optical and electronic materials • Optical Magnetic Field • Optics, Optoelectronics, Plasmonics and Optical De • Physics and Astronomy • Plasmonic Antenna • Scanning Near-field Optical Microscopy • SNOM NSOM • Surface Plasmon Resonance • Tailor-made metamaterials
ISBN-10 3-319-28792-3 / 3319287923
ISBN-13 978-3-319-28792-8 / 9783319287928
Zustand Neuware
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