Národní úložiště šedé literatury Nalezeno 2 záznamů.  Hledání trvalo 0.00 vteřin. 
Applications of metallic probe for the control of optical processes and near-field imaging
Gallina, Pavel ; Klapetek, Petr (oponent) ; Křápek, Vlastimil (vedoucí práce)
The main subject of this master’s thesis are electromagnetic simulations using the finite element method (FEM) to investigate the influence of graphene on tip-enhanced Raman spectroscopy (TERS) and surface-enhanced infrared absorption spectroscopy (SEIRA) and to inspect the sensitivity of the scanning near-field optical microscope (SNOM) probe to the components of electromagnetic field depending on the parameters of the probe (the aperture diameter in the metallic coating). First, the calculation of TERS system composed of a silver tip located above a gold substrate with a thin layer of molecules is carried out to understand the principles of TERS. Then the graphene layer is added on top of the molecules to examine its influence in visible (TERS) and infrared (SEIRA) region of the spectrum. The second part focuses on the calculations of energy flux through a metal coated glass fiber forming a SNOM tip interacting with the near-field of surface plasmon polaritons. Here, we consider a gold layer with four slits arranged in a square pattern on a glass substrate serving as a source of a surface plasmon polariton standing wave with spatially separated maxima of in-plane and out-of-plane electric field components.
Applications of metallic probe for the control of optical processes and near-field imaging
Gallina, Pavel ; Klapetek, Petr (oponent) ; Křápek, Vlastimil (vedoucí práce)
The main subject of this master’s thesis are electromagnetic simulations using the finite element method (FEM) to investigate the influence of graphene on tip-enhanced Raman spectroscopy (TERS) and surface-enhanced infrared absorption spectroscopy (SEIRA) and to inspect the sensitivity of the scanning near-field optical microscope (SNOM) probe to the components of electromagnetic field depending on the parameters of the probe (the aperture diameter in the metallic coating). First, the calculation of TERS system composed of a silver tip located above a gold substrate with a thin layer of molecules is carried out to understand the principles of TERS. Then the graphene layer is added on top of the molecules to examine its influence in visible (TERS) and infrared (SEIRA) region of the spectrum. The second part focuses on the calculations of energy flux through a metal coated glass fiber forming a SNOM tip interacting with the near-field of surface plasmon polaritons. Here, we consider a gold layer with four slits arranged in a square pattern on a glass substrate serving as a source of a surface plasmon polariton standing wave with spatially separated maxima of in-plane and out-of-plane electric field components.

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