Publications on the project |
006 On the possibility of creating optoelectronic hardware items submillimeter range on the basis of new diffraction effects |
Authors: | Lytvynenko L.M., Gavrykov V.K. | |
Summary: | | |
Keywords: | | |
Edition: | | | | 2014,
58-63,Russian |
006 Filter of submillimeter range |
Authors: | Lytvynenko L.M., Gavrikov V.K. | |
Summary: | | |
Keywords: | | |
Edition: | In «Nanotechnology and nanomaterials. Technology Developments Book». Edited by Dr. O. Fesenko. Lviv, Eurosvit | | | 2014,
,English |
006 Optical bistability in a grating with slits filled nonlinear media |
Authors: | Kochetova L. A., Prosvirnin S. L., Tuz V. R. | |
Summary: | | |
Keywords: | | |
Edition: | Progress In Electromagnetics Research, vol. 35 | | | 2014,
133-139,English |
006 Influence of optical properties of semiconductor and profile settings periodic surface structure on plasmon-polariton resonance in the THz range |
Authors: | Spevak I.S., Timchenko M.A., Gavrikov V.K., Shulga V.M., Feng Jing, Hong Bo Sun, Kats A.V. | |
Summary: | | |
Keywords: | | |
Edition: | | | | 2013,
341-348,Russian |
006 Electromagnetiс controllable surfaces based on trapped-mode effect |
Authors: | Dmitriev V., Prosvirnin S., Tuz V., Kawakatsu M. | |
Summary: | | |
Keywords: | | |
Edition: | Advanced Electromagnetics, V.1, N.2 | | | 2012,
89-95,English |
006 All-optical switching in metamaterial with high structural symmetry |
Authors: | Tuz V., Prosvirnin S. | |
Summary: | | |
Keywords: | | |
Edition: | The European Physical Journal – Applied Physics,v.56, №3, 30401 | | | 2011,
,English |
006 High quality resonances for terahertz radiation diffraction at periodically corrugated semiconductor interfaces |
Authors: | Spevak I.S., Timchenko M.A., Gavrikov V.K., Shulga V.M., Jing Feng, Hong Bo Sun, Kats A.V. | |
Summary: | | |
Keywords: | | |
Edition: | Appl.Phys.B Lasers and Optics, 104 | | | 2011,
925-930,English |
The events in the framework of the project |
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006 1. Physics of nanostructures Purpose: Expected results:Other (to increase production, improve working conditions, environmental improvement, energy savings, material savings, reduced equipment wear, increase productivity, improve efficiency of diagnosis and treatment, etc.) Stage 1: Stage 2: Stage 3: Stage 4: Stage 5:
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