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Dive into the research topics where I. Blonskyi is active.

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Featured researches published by I. Blonskyi.


Proceedings of SPIE, the International Society for Optical Engineering | 2010

Interaction of femtosecond filaments in sapphire

I. Blonskyi; Viktor Kadan; O. Shpotyuk; P. Korenyuk; Ihor Pavlov

The interaction of two femtosecond filaments has been studied in single-crystal sapphire at small crossing angles 1.2° ÷5°. Regular multifilament pattern (MFP) can be formed in the overlapping area of two beams, which depends on the pulse energy, crossing angle, and phase difference. As a special realization of MFP, formation of a single filament from two different pump beams was for the first time observed. The number of filaments in the MFP depends on the number of the interference maxima in overlapping area, whose power exceeds critical power for self-focusing. We demonstrate control of multifilament pattern, changing the phase shift between the interacting beams. Attraction and repulsion of the filaments is observed in vicinity of the overlapping region for both in- and counter-phase beams depending on the position Z along the propagation axis. Transformation of near- and far-field images of the single filament, formed by two pump beams, and spectra of its axial emission have been studied depending on the filament length. It has been shown that four-wave mixing plays a major role in forming the axial emission spectrum.


Advanced Topics in Optoelectronics, Microelectronics, and Nanotechnologies V | 2010

Non-linear effects in chalcogenide glasses

I. Blonskyi; Viktor Kadan; Ihor Pavlov; P. Korenyuk; Igor Dmitruk; O. Shpotyuk; Mihail Iovu

Femtosecond filamentation of 800 nm laser pulses in the conditions of strong two-photon absorption was first directly observed in As4Ge30S66 chalcogenide glass. In this paper we also present the experimental results on laser self-written waveguides in arsenic-germanium-sulfide glasses. In contrast, there was no filamentation and spectrum widening in stoichiometric As2S3 glass. It was shown that nonlinear figure of merit was as high as 0.52 and only 0.04 in glassy As4Ge30S66 and As2S3, respectively.


Optics Communications | 2009

Manifestations of sub- and superluminality in filamented femtosecond laser pulse in fused silica

I. Blonskyi; Viktor Kadan; O. Shpotyuk; Igor Dmitruk


Optical Materials | 2010

Femtosecond filamentation in chalcogenide glasses limited by two-photon absorption

I. Blonskyi; Viktor Kadan; O. Shpotyuk; Mihail Iovu; Ihor Pavlov


Applied Physics B | 2009

Spatiotemporal dynamics of femtosecond filament induced plasma channel in fused silica

I. Blonskyi; M. Brodyn; Viktor Kadan; O. Shpotyuk; Igor Dmitruk; Ihor Pavlov


Applied Physics B | 2011

Filament-induced self-written waveguides in glassy As4Ge30S66

I. Blonskyi; Viktor Kadan; O. Shpotyuk; M. Iovu; P. Korenyuk; Igor Dmitruk


Applied Physics B | 2012

Cherenkov phase-matching in Raman-seeded four-wave mixing by a femtosecond Bessel beam

I. Blonskyi; Viktor Kadan; Igor Dmitruk; P. Korenyuk


Applied Physics B | 2015

Periodic femtosecond filamentation in birefringent media

I. Blonskyi; Viktor Kadan; Y. Shynkarenko; O. Yarusevych; P. Korenyuk; V. Puzikov; L. Grin


Ukrainian Journal of Physics | 2018

Self-Organized Structuring of the Surface of a Metal–Semiconductor Composite by Femtosecond Laser Processing

N. Berezovska; Igor Dmitruk; A. Kalyuzhnyy; Andriy Dmytruk; I. Blonskyi


Applied Physics A | 2018

Spatio-temporal dynamics of femtosecond laser pulses at 1550 nm wavelength in crystal silicon

Viktor Kadan; Svitlana Pavlova; Ihor Pavlov; Hossein Rezaei; Omer Ilday; I. Blonskyi

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Viktor Kadan

National Academy of Sciences of Ukraine

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P. Korenyuk

National Academy of Sciences of Ukraine

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Igor Dmitruk

Taras Shevchenko National University of Kyiv

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O. Shpotyuk

Jan Długosz University

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Svitlana Pavlova

National Academy of Sciences of Ukraine

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Oleh Spotyuk

Jan Długosz University

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