Investigation of Dilute Magnetic Systems with Spin-1 Ising Model in the Frame of Generalized Statistical Mechanics
M.Karabekirogullari, F.Buyukkilic, D.Demirhan

TL;DR
This paper explores the magnetization behavior of dilute magnetic systems modeled by a spin-1 Ising model within the framework of generalized non-extensive statistical mechanics, aiming to understand complex phase phenomena.
Contribution
It introduces a novel application of the spin-1 Ising model in non-extensive statistical mechanics to analyze dilute magnetic systems with multiple states and order parameters.
Findings
Thermodynamical properties of various physical phenomena are modeled.
Insights into phase transitions and magnetic ordering are provided.
The approach extends understanding of complex magnetic systems.
Abstract
In this study the magnetization phenomenon has been investigated as a behavior of interacting elementary moments ensemble, with the help of Ising model [1] in the frame of non-extensive statistical mechanics. To investigate the physical systems with three states and two order parameters, the spin-1 single lattice Ising model or three states systems are used. In the manner of this model thermodynamical properties of a great deal of physical phenomena such as ferromagnetism in bilateral alloys, liquid mixtures, liquid-crystal mixtures, freezing, magnetic orderliness, phase transformations, semi-stable and unstable states, ordered and disordered transitions [2,3,4,5].
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Taxonomy
TopicsStatistical Mechanics and Entropy · Complex Systems and Time Series Analysis · Theoretical and Computational Physics
