Novel solitons in the (2+1)-dimensional Heisenberg spin chain via generalized conformable derivatives
Badar E Alam, Gesuri Morales-Luna, Guillermo Fernandez-Anaya

TL;DR
This paper finds new soliton solutions for a magnetic spin chain equation using advanced math techniques, which could help in developing magnetic memory technologies.
Contribution
The study introduces novel complex transformations with generalized conformable derivatives to derive exact soliton solutions for the Heisenberg spin chain equation.
Findings
Kink-wave, hyperbolic, trigonometric, and periodic wave solutions were obtained using three analytical methods.
The solutions were validated using 2D, 3D, and contour plots for specific parameter choices.
The proposed methods show potential for applications in fluid dynamics, quantum mechanics, and plasma physics.
Abstract
This study employs advanced mathematical techniques to investigate exact solutions for the fractional (2+1)-dimensional Heisenberg ferromagnetic spin chain (HFSC) equation. Novel complex transformations—based on the generalized conformable derivative, exponential functions, arctanh, and arctan—are used to reduce the partial differential equation to an ordinary one. Three analytical methods are applied to obtain solutions: the modified Kudryashov method, the improved Bernoulli subequation function method (IBSEFM), and the modified extended direct algebraic method (mEDAM). These methods yield kink-wave, hyperbolic, trigonometric, and periodic wave solutions, which are validated through 2D, 3D, and contour plots for specific parameter choices. The main objective of this study is to derive exact soliton solutions of the Heisenberg spin chain equation using generalized conformable…
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Taxonomy
TopicsNonlinear Waves and Solitons · Fractional Differential Equations Solutions · Nonlinear Photonic Systems
