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Yuri S. Kivshar

Researcher at Australian National University

Publications -  1876
Citations -  94737

Yuri S. Kivshar is an academic researcher from Australian National University. The author has contributed to research in topics: Nonlinear system & Metamaterial. The author has an hindex of 126, co-authored 1845 publications receiving 79415 citations. Previous affiliations of Yuri S. Kivshar include Technische Universität Darmstadt & Los Alamos National Laboratory.

Papers
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Experimental studies of the internal Goos–Hänchen shift for self-collimated beams in two-dimensional microwave photonic crystals

TL;DR: In this article, a microwave photonic crystal, fabricated from alumina rods, was used to control the output position of a reflected beam undergoing an internal Goos-Hanchen shift by changing the rod diameter at the reflection surface.
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Magnetic Dipole Ordering in Resonant Dielectric Metasurfaces

TL;DR: In this article, the magnetic dipole orders of the lattices of meta-atoms can appear in low-symmetry Mie-resonant metasurfaces where each asymmetric dielectric (nonmagnetic) meta-atom supports a localized trapped mode.
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Observation of nonlinear surface waves in modulated waveguide arrays

TL;DR: It is shown that the beam switching to different output waveguides with a change of the light intensity due to nonlinear coupling between the linear surface modes supported by the array can be changed.
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Many-particle effects in nearly integrable systems

TL;DR: In this paper, three-particle effects in collision of a fast soliton with two more slow ones are considered in the first order of the perturbation theory and the momentum and energy exchanged between the fast and slow solitons are calculated.
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Pulse measurements by randomly quasi phase matched second harmonic generation in the regime of total internal reflection

TL;DR: In this paper, the frequency doubling in disordered quadratic nonlinear media in the regime of total internal reflection of the fundamental beam was shown experimentally, and the transversely emitted second harmonic can be employed for an efficient characterization of short laser pulses.