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Conference 9125: Metamaterials

agreement with the circuit calculations. We also experimentally

by the objective lens onto the sample with waist about 25 m and behind it were collected by the lens to the photon-multiply

The designed meta-atom opens exciting opportunities to impose a novel control mechanism over microwave signals. independent magnetoinductive waves with orthogonal polarisations, which can propagate along the chain without

9125-39, Session 9

Frequency-resolved optical gating of one-dimensional plasmonic crystals
Tatyana V. Dolgova, Varvara V. Zubyuk, Alexander I. Musorin, Andrey A. Fedyanin, Lomonosov Moscow State Univ. (Russian Federation)

plasmons polaritons and gives rise to its unique properties

Static and dynamic properties of third harmonic generation in fishnet metamaterials
Alexander Shorokhov, Maxim Shcherbakov, Lomonosov Moscow State Univ. (Russian Federation); JЖrg Reinhold, Christian Helgert, Thomas Pertsch, Friedrich-Schiller-Univ. Jena (Germany); Andrey A. Fedyanin, Lomonosov Moscow State Univ. (Russian Federation)
fishnet metamaterials and its transient properties on the subpicosecond time scale were studied. The proposed fishnet metamaterial was defined by e-beam-

nanostructures as devices that control the optical radiation

time-resolved Stokes polarimetry [2] based on the intensity autocorrelation scheme that is the most common technique to examine ultrashort pulses because it is easy to set up and such a measurement. Frequency-Resolved Optical Gating field. dimensional plasmonic crystals is studied experimentally by using FROG technique.

directions.

carried out. The normal incidence IR absorption spectrum between them increases with increasing the incidence angle. nonlinear measurements a setup based on an optical parametric

sample. The sample was placed on a six-axis positioning stage so that during the angular spectroscopy the beam was always harmonic generation (THG) signal pulses were detected by a photomultiplier tube and gate-integrated by an oscilloscope.

incident light there are significant changes as the pulse width

pulses.

[2] M. R. Shcherbakov, P. P. Vabishchevich, V. V. Komarova, T. V. Dolgova, V. I. Panov, V. V. Moshchalkov, and A. A. Fedyanin

KrumbЭgel, B.A. Richman, and D.J. Kane, "Measuring ultrashort

channels was up to 20 mW that corresponds to peak intensities

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