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Some Basic Electromagnetism

Glenn D. Boreman, Javier Alda

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Abstract

Classical electromagnetism and photonics share a common foundation. Light propagation and interaction, even at the nanoscale, is driven by Maxwell’s equations and macroscopic parameterization of materials through their optical and electromagnetic properties. These equations relate the spatial and temporal variations of the displacement electric field.

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Classical electromagnetism and photonics share a common foundation. Light propagation and interaction, even at the nanoscale, is driven by Maxwell’s equations and macroscopic parameterization of materials through their optical and electromagnetic properties. These equations relate the spatial and temporal variations of the displacement electric field.

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Available abstract

Classical electromagnetism and photonics share a common foundation. Light propagation and interaction, even at the nanoscale, is driven by Maxwell’s equations and macroscopic parameterization of materials through their optical and electromagnetic properties. These equations relate the spatial and temporal variations of the displacement electric field.

Key concepts: Electromagnetism, Electromagnetic field, Maxwell's equations, Electric displacement field, Classical electromagnetism, Physics, Classical mechanics, Displacement (psychology)

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