2020AIP conference proceedingsRequires access

Theoretical study of Maxwell's equations in nonlinear optics

Adi Jufriansah, Arief Hermanto, Moh. Toifur, Erwin Prasetyo

Open publisher page 4 citations

Abstract

The translation of Maxwell's equations and the motion of electrons in a medium that always been known to use potential depends on time and position. Maxwell's equations in a vacuum result in the completion of a linear electromagnetic field. If the non-linear medium Maxwell's equation will create a non-linear electromagnetic field solution.

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What this paper is about

The translation of Maxwell's equations and the motion of electrons in a medium that always been known to use potential depends on time and position. Maxwell's equations in a vacuum result in the completion of a linear electromagnetic field. If the non-linear medium Maxwell's equation will create a non-linear electromagnetic field solution.

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OpenAlex reports 4 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The translation of Maxwell's equations and the motion of electrons in a medium that always been known to use potential depends on time and position. Maxwell's equations in a vacuum result in the completion of a linear electromagnetic field. If the non-linear medium Maxwell's equation will create a non-linear electromagnetic field solution.

Key concepts: Maxwell's equations, Inhomogeneous electromagnetic wave equation, Electromagnetic field, Physics, Electromagnetic field solver, Nonlinear system, Field (mathematics), Matrix representation of Maxwell's equations

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