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Research Article | Open Access

Exact solutions and conservation laws for the time-fractional nonlinear dirac system: A study of classical and nonclassical lie symmetries

Farzaneh Alizadeh1,2,3( )Samad Kheybari4Kamyar Hosseini2,3,5
Department of Mathematics, Near East University TRNC, Mersin10, Nicosia 99138, Turkey
Mathematics Research Center, Near East University TRNC, Mersin 10, Nicosia 99138, Turkey
Research Center of Applied Mathematics, Khazar University, Baku, Azerbaijan
Faculty of Art and Science, University of Kyrenia, TRNC, Mersin 10, Turkey
Faculty of Engineering and Natural Sciences, Istanbul Okan University, Istanbul, Turkey
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Abstract

Time-fractional Dirac-type systems arise in quantum field theory, plasma physics, and condensed matter systems where fractional calculus captures nonlocal interactions. In this study, we employ classical and nonclassical Lie symmetry methods to analyze the underlying symmetry structure of the system. By deriving infinitesimal generators and performing similarity reductions, we transform the governing fractional partial differential equations (FPDEs) into fractional ordinary differential equations (FODEs). Exact solutions are constructed using the power series method. Furthermore, we establish conservation laws in the fractional setting, ensuring the physical consistency of the system. Our findings offer new insights into the interplay among symmetry, conservation principles, and exact solutions in fractional quantum field models, expanding the analytical toolkit for studying nonlinear relativistic wave equations.

CLC number: 35R11, 70H33, 76M60

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AIMS Mathematics
Pages 11757-11782

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Cite this article:
Alizadeh F, Kheybari S, Hosseini K. Exact solutions and conservation laws for the time-fractional nonlinear dirac system: A study of classical and nonclassical lie symmetries. AIMS Mathematics, 2025, 10(5): 11757-11782. https://doi.org/10.3934/math.2025532

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Received: 31 March 2025
Revised: 08 May 2025
Accepted: 13 May 2025
Published: 15 May 2025
©2025 the Author(s), licensee AIMS Press.

This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0)