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Magnetic Charged Particles of Optical Spherical Antiferromagnetic Model With Fractional System

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Date

2021

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Volume Title

Publisher

de Gruyter Poland Sp Z O O

Open Access Color

GOLD

Green Open Access

Yes

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No
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Abstract

In this article, we first consider approach of optical spherical magnetic antiferromagnetic model for spherical magnetic flows of Upsilon-magnetic particle with spherical de-Sitter frame in the de-Sitter space S-1(2). Hence, we establish new relationship between magnetic total phases and spherical timelike flows in de-Sitter space S-1(2). In other words, the applied geometric characterization for the optical magnetic spherical antiferromagnetic spin is performed. Moreover, this approach is very useful to analyze some geometrical and physical classifications belonging to Upsilon-particle. Besides, solutions of fractional optical systems are recognized for submitted geometrical designs. Geometrical presentations for fractional solu-tions are obtained to interpret the model. These obtained results represent that operation is a compatible and sig-nificant application to restore optical solutions of some fractional systems. Components of models are described by physical assertions with solutions. Additionally, we get solutions of optical fractional flow equations with designs of our results in de-Sitter space S-1(2).

Description

Bin-Mohsin Or Almohsen, Bandar/0000-0002-2160-4159

Keywords

Upsilon-Magnetic Particle, Geometric Phase, Optical Fiber, Evolution Equations, Traveling Wave Hypothesis, Antiferromagnetic, optical fiber, Geometric Phase, Upsilon-magnetic particle, evolution equations, ?-magnetic particle, Physics, QC1-999, traveling wave hypothesis, Antiferromagnetic, Optical Fiber, geometric phase, ϒ-Magnetic Particle, ϒ-magnetic particle, antiferromagnetic, Evolution Equations, Traveling Wave Hypothesis

Turkish CoHE Thesis Center URL

Fields of Science

01 natural sciences, 0103 physical sciences

Citation

Yao, Shao-Wen...et al. (2021). "Magnetic charged particles of optical spherical antiferromagnetic model with fractional system", Open Physics, Vol. 19, No. 1, pp. 590-601.

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Q2

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Q2
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Source

Open Physics

Volume

19

Issue

1

Start Page

590

End Page

601
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Citations

Scopus : 1

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