Zobrazeno 1 - 5
of 5
pro vyhledávání: '"Eugene Bortchagovsky"'
Autor:
Eugene Bortchagovsky, P. Christian Simo, Ilya Milekhin, Jia Tang, Dietrich R.T. Zahn, Monika Fleischer
Publikováno v:
Micro and Nano Engineering, Vol 18, Iss , Pp 100172- (2023)
This article demonstrates the capability of imaging micro-ellipsometry in the investigation of ordered plasmonic nanostructures on different substrates. The difference of the resonances of similar square lattices of plasmonic nanoparticles on a diele
Externí odkaz:
https://doaj.org/article/de850cba1bd74b3ab420227bcdd4c8d0
Autor:
Andrii Vasin, Olexander Slobodian, Andrii Rusavsky, Olexander Gudymenko, Petro Lytvyn, Stanislav Tiagulskyi, Roman Yatskiv, Jan Grym, Eugene Bortchagovsky, Volodymyr Dzhagan, Dietrich Zahn, Alexei Nazarov
Publikováno v:
Journal of Physics D: Applied Physics. 56:275302
Magnetron discharge plasma was applied for the synthesis of CN x thin layers using methane and nitrogen gas precursors. The incorporation of nitrogen in the carbon network resulted in the dramatic evolution of growth morphology: from a ‘buried’ p
Publikováno v:
Applied Optics. 62:904
Ellipsometry is a powerful and sensitive optical method for the investigation of surfaces and thin films. However, the absence of possibilities for direct interpretation of the ellipsometric spectra creates an impression of the complexity of this met
Autor:
Dietrich R. T. Zahn, Michael Hietschold, Raul D. Rodriguez, Ashutosh Mukherjee, Teresa Madeira, Eugene Bortchagovsky, Evgeniya Sheremet
Publikováno v:
ACS Photonics. 5:3338-3346
For quite a long time, people thought of the diffraction limit of light as a fundamental unbreakable barrier that prevents seeing objects with sizes smaller than half the wavelength of light. Super-resolution optical methods and near-field optics ena
Autor:
Eugene Bortchagovsky
Publikováno v:
Journal of Vacuum Science & Technology B. 38:013603
Interacting electromagnetic modes are known to hybridize, and their dispersions split instead of crossing, resulting in an energy gap between them. Such a coupling exists between localized plasmon of nanoparticles and surface plasmon of a supporting