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dc.contributor.authorMar'yan, Mykhaylo-
dc.contributor.authorYurkovych, Nataliya-
dc.contributor.authorSeben, Vladimir-
dc.date.accessioned2023-04-17T13:55:35Z-
dc.date.available2023-04-17T13:55:35Z-
dc.date.issued2019-09-05-
dc.identifier.citationMarýan, M, Yurkovych, N. & Seben, V. Self-organized structures and fractality of the non-crystalline materials As (Ge)-S (Se) systems. In 24th Conference оf Slovak Physicists Proceedings. Published: Slovak Physical Society, EQUILIBRIA, s.r.o., Košice, 2019. P. 89-90 ISBN 978-80-89855-10-0uk
dc.identifier.isbn978-80-89855-10-0-
dc.identifier.urihttps://dspace.uzhnu.edu.ua/jspui/handle/lib/50662-
dc.description24th Conference of Slovak Physicists. Zhilina, September 2-5, 2019 (Slovakia)uk
dc.description.abstractIn this article research of fractality and processes of structuring non-crystalline materials As (Ge)-S (Se) systems are presented. The peculiarities of structure and properties of non-crystalline solids, their interrelation with methods of obtaining are analyzed. Existing model approaches to describing the structure of non-crystalline solids and the transition to a non-crystalline state consider either individual characteristic time scales of their formation, or a separate group of properties and features of the structure. With significant deviations of the system from equilibrium synergetic effects and the mechanism of transformation of energy and information play a decisive role. The integrity of the formation of a non-crystalline state can be taken into account with the use of a synergetic approach within the framework of the theory of self-organized structures that makes it possible to determine the mode of formation in conjunction with the conditions of obtaining. The dependence of the lifetime and the period of self-organized structures on the cooling velocity are studied. In particular, for non-crystalline materials systems As-S(Se) period Å and correlates with the micro-, nanosized of the middle order. The nature of the bifurcation process of transition to a non-crystalline state in the framework of the theory of neural networks with Hebb and Kohenen algorithms also is revealed.uk
dc.language.isoenuk
dc.publisherPublished: Slovak Physical Society, EQUILIBRIA, s.r.o., Košiceuk
dc.subjectsynergetics, fractal, self-organiziationuk
dc.subjectsynergetics, fractality, self-organizationuk
dc.titleSELF-ORGANIZED STRUCTURES AND FRACTALITY OF THE NON-CRYSTALLINE MATERIALS As (Ge)-S(Se) SYSTEMSuk
dc.typeTextuk
dc.pubTypeСтаттяuk
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