Title of article
Decomposition of the total momentum in a linear dielectric into field and matter components Original Research Article
Author/Authors
Michael E. Crenshaw، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
10
From page
97
To page
106
Abstract
The long-standing resolution of the Abraham–Minkowski electromagnetic momentum controversy is predicated on a decomposition of the total momentum of a closed continuum electrodynamic system into separate field and matter components. Using a microscopic model of a simple linear dielectric, we derive Lagrangian equations of motion for the electric dipoles and show that the dielectric can be treated as a collection of stationary simple harmonic oscillators that are driven by the electric field and produce a polarization field in response. The macroscopic energy and momentum are defined in terms of the electric, magnetic, and polarization fields that travel through the dielectric together as a pulse of electromagnetic radiation. We conclude that both the macroscopic total energy and the macroscopic total momentum are entirely electromagnetic in nature for a simple linear dielectric in the absence of significant reflections.
Keywords
Minkowski momentum , Gordon momentum , Lorentz force , Abraham–Minkowski controversy , Electromagnetic momentum , Abraham momentum
Journal title
Annals of Physics
Serial Year
2013
Journal title
Annals of Physics
Record number
1206923
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