Displacement Current in Classical and Quantum Systems

Fuente: arXiv
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Main Authors: Ferry, David K., Oriols, Xavier, Eisenberg, Robert
Format: Preprint
Published: 2024
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author Ferry, David K.
Oriols, Xavier
Eisenberg, Robert
author_facet Ferry, David K.
Oriols, Xavier
Eisenberg, Robert
contents It is certain that electrical properties-whether slow (sec) or fast (nsec), even optical (fsec)-are described by Maxwell's equations, and there are terms that depend on the rate of change of the electric and magnetic fields. In particular, Maxwell's equation for the curl of the magnetic field contains both the steady current and a term depending upon the temporal derivative of the electric displacement field. The latter is referred to as displacement current, and is generally believed to have been included originally by Maxwell himself, although there is evidence it was earlier considered by Kirchhoff. Maxwell's equations and Kirchoff's circuit laws both are important over the wide range of frequencies with which electronics traditionally deals. And, displacement current is an important contribution to these in both classical and quantum mechanics. Here, the development of displacement current, its importance in both classical and quantum mechanics, and some applications are provided to illustrate the fundamental role that it plays in the dynamics of a wide range of systems.
format Preprint
id arxiv_https___arxiv_org_abs_2408_13268
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Displacement Current in Classical and Quantum Systems
Ferry, David K.
Oriols, Xavier
Eisenberg, Robert
Classical Physics
Quantum Physics
It is certain that electrical properties-whether slow (sec) or fast (nsec), even optical (fsec)-are described by Maxwell's equations, and there are terms that depend on the rate of change of the electric and magnetic fields. In particular, Maxwell's equation for the curl of the magnetic field contains both the steady current and a term depending upon the temporal derivative of the electric displacement field. The latter is referred to as displacement current, and is generally believed to have been included originally by Maxwell himself, although there is evidence it was earlier considered by Kirchhoff. Maxwell's equations and Kirchoff's circuit laws both are important over the wide range of frequencies with which electronics traditionally deals. And, displacement current is an important contribution to these in both classical and quantum mechanics. Here, the development of displacement current, its importance in both classical and quantum mechanics, and some applications are provided to illustrate the fundamental role that it plays in the dynamics of a wide range of systems.
title Displacement Current in Classical and Quantum Systems
topic Classical Physics
Quantum Physics
url https://arxiv.org/abs/2408.13268