Theoretical study of Maxwell's equations in nonlinear optics
Adi Jufriansah, Arief Hermanto, Moh. Toifur, Erwin Prasetyo
Abstract
Adi Jufriansah, Arief Hermanto, Moh. Toifur, Erwin Prasetyo
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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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