Spherical traveling wave hypothesis for geometric optical phase with speherical magnetic ferromagnetic system

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Springer

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info:eu-repo/semantics/closedAccess

Özet

In this article, we investigate new constructions of optical Heisenberg spherical optical ferromagnetic spin of timelike magnetic fluids by de Sitter frame. Also, we approach spherical magnetic flows geometrically. Thus, we get total magnetic spherical phases of magnetic spherical timelike fluids. Finally, we construct new numerical presentations of optical spherical magnetic ferromagnetic particles by analytical spherical traveling wave interpretation. © 2022, The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature.

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Fluid equations, Geometric phase, Heisenberg spherical ferromagnetic spin, Optical fiber, Spherical traveling wave hypothesis, Ferromagnetic materials, Ferromagnetism, Spheres, Spinning (fibers), Ferromagnetic spin, Ferromagnetic systems, Fluid equations, Geometric phase, Heisenberg, Heisenberg spherical ferromagnetic spin, Optical phasis, Optical-, Spherical traveling wave hypothesis, Spherical traveling waves, Optical fibers

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Optical and Quantum Electronics

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55

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2

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Onay

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