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Calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2D

Two-dimensional fields in regions with constant material properties (magnetic permeability, dielectric permittivity, heat conductivity, etc.) can be derived from a complex potential function W, where the real and imaginary parts correspond to the scalar potential function F and the stream function Y...

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Detalles Bibliográficos
Autor principal: Gyr, Marcel
Lenguaje:eng
Publicado: 2000
Materias:
Acceso en línea:http://cds.cern.ch/record/702346
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author Gyr, Marcel
author_facet Gyr, Marcel
author_sort Gyr, Marcel
collection CERN
description Two-dimensional fields in regions with constant material properties (magnetic permeability, dielectric permittivity, heat conductivity, etc.) can be derived from a complex potential function W, where the real and imaginary parts correspond to the scalar potential function F and the stream function Y respectively. In source-free regions (no currents, electric charges, heat sinks, etc.), the field, is conservative and its complex potential W is a harmonic function where F and Y satisfy the Laplace equation. In such regions W can be expressed as a power series, the coefficients of which being the, multipole components of the field with respect to the origin of the series expansion. This note describes how these multipole coefficients are related to the amplitudes and phase angles as computed by, FLUX2D in the spectrum analysis of the magnetic vector potential. In the case of electrical or thermal problems, these same considerations apply by analogy.
id cern-702346
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2000
record_format invenio
spelling cern-7023462023-05-11T12:03:22Zhttp://cds.cern.ch/record/702346engGyr, MarcelCalculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2DAccelerators and Storage RingsTwo-dimensional fields in regions with constant material properties (magnetic permeability, dielectric permittivity, heat conductivity, etc.) can be derived from a complex potential function W, where the real and imaginary parts correspond to the scalar potential function F and the stream function Y respectively. In source-free regions (no currents, electric charges, heat sinks, etc.), the field, is conservative and its complex potential W is a harmonic function where F and Y satisfy the Laplace equation. In such regions W can be expressed as a power series, the coefficients of which being the, multipole components of the field with respect to the origin of the series expansion. This note describes how these multipole coefficients are related to the amplitudes and phase angles as computed by, FLUX2D in the spectrum analysis of the magnetic vector potential. In the case of electrical or thermal problems, these same considerations apply by analogy.SL-Note-97-62-BToai:cds.cern.ch:7023462000-03-01
spellingShingle Accelerators and Storage Rings
Gyr, Marcel
Calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2D
title Calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2D
title_full Calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2D
title_fullStr Calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2D
title_full_unstemmed Calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2D
title_short Calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by FLUX2D
title_sort calculation of the multipole coefficients of 2-dimensional magnetic fields from the spectrum analysis computed by flux2d
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/702346
work_keys_str_mv AT gyrmarcel calculationofthemultipolecoefficientsof2dimensionalmagneticfieldsfromthespectrumanalysiscomputedbyflux2d