Plasmon-Enhanced Near-Field Optical Spectroscopy of Multicomponent Semiconductor Nanostructures
Autor: | T. A. Duda, Alexander G. Milekhin, Mahfujur Rahaman, Dietrich R. T. Zahn, K. V. Anikin, Anton Latyshev, Volodymyr Dzhagan, Roman B. Vasiliev, E. E. Rodyakina, I. A. Milekhin |
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Rok vydání: | 2019 |
Předmět: |
010302 applied physics
Materials science Nanostructure business.industry Physics::Optics Near and far field Condensed Matter::Mesoscopic Systems and Quantum Hall Effect Condensed Matter Physics 01 natural sciences Nanoclusters 010309 optics Condensed Matter::Materials Science symbols.namesake Quantum dot 0103 physical sciences symbols Optoelectronics Electrical and Electronic Engineering Photonics Spectroscopy business Instrumentation Raman scattering Plasmon |
Zdroj: | Optoelectronics, Instrumentation and Data Processing. 55:488-494 |
ISSN: | 1934-7944 8756-6990 |
DOI: | 10.3103/s875669901905011x |
Popis: | Multicomponent semiconductor nanostructures were studied by local spectral analysis based on surface-enhanced Raman scattering by semiconductor nanostructures located on the surface of an array of Au nanoclusters near the metallized tip of an atomic force microscope. In the gap between the metal nanoclusters and the tip, where a semiconductor nanostructure is located, there is a strong increase in the local electric field (hot spot), resulting in a dramatic enhancement of the Raman scattering signal. An unprecedented enhancement of the Raman scattering signal by two-dimensional (over 108 for MoS2) and zero-dimensional (106 for CdSe nanocrystals) semiconductor nanostructures was achieved. The use of the method for mapping the Raman scattering response of a multicomponent system of MoS2 and CdSe made it possible to identify components with a spatial resolution far exceeding the diffraction limit. |
Databáze: | OpenAIRE |
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