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Yu. B. Golubovskii

Researcher at Saint Petersburg State University

Publications -  108
Citations -  2085

Yu. B. Golubovskii is an academic researcher from Saint Petersburg State University. The author has contributed to research in topics: Glow discharge & Electron. The author has an hindex of 19, co-authored 106 publications receiving 1967 citations. Previous affiliations of Yu. B. Golubovskii include Ukhta State Technical University.

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Modelling of the homogeneous barrier discharge in helium at atmospheric pressure

TL;DR: In this article, the authors performed numerical calculations of spatio-temporal characteristics of the homogeneous barrier discharge in helium by means of a one-dimensional fluid model and analyzed the influence of the elementary processes on the discharge behavior by variation of the corresponding rate constants.
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Influence of interaction between charged particles and dielectric surface over a homogeneous barrier discharge in nitrogen

TL;DR: In this paper, a fluid model of the homogeneous barrier discharge for nitrogen at atmospheric pressure is constructed and the primary excitation and ionization processes specific for this discharge are pointed out.
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Transport mechanisms of metastable and resonance atoms in a gas discharge plasma

TL;DR: A review of the theoretical and experimental studies on the spatial formation and temporal evolution of metastable and resonance atoms in weakly ionized low-temperature plasmas is presented in this paper.
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Diffuse barrier discharges in nitrogen with small admixtures of oxygen : discharge mechanism and transition to the filamentary regime

TL;DR: In this article, the authors investigated the discharge dynamics of diffuse barrier discharges in nitrogen with small admixtures of oxygen and showed that secondary electron emission by N2(A?3?u) metastable states plays a major role in discharge maintenance.
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Study of the homogeneous glow-like discharge in nitrogen at atmospheric pressure

TL;DR: In this paper, an experimental investigation of the electrical and optical discharge characteristics of barrier discharge in nitrogen at 50 Hz was carried out and short-time photographs of the light intensity distribution in the discharge were obtained.