Cargando…

Electromagnetic fields and Green functions in elliptical vacuum chambers

In this paper, we discuss the electromagnetic interaction between a point charge travelling inside a waveguide of elliptical cross section, and the waveguide itself. By using a convenient expansion of the Mathieu functions, useful in particular for treating a variety of problems in applied mathemati...

Descripción completa

Detalles Bibliográficos
Autores principales: Persichelli, Serena, Biancacci, Nicolo, Migliorati, Mauro, Palumbo, Luigi, Vaccaro, Vittorio
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevAccelBeams.20.101004
http://cds.cern.ch/record/2287796
_version_ 1780956095070601216
author Persichelli, Serena
Biancacci, Nicolo
Migliorati, Mauro
Palumbo, Luigi
Vaccaro, Vittorio
author_facet Persichelli, Serena
Biancacci, Nicolo
Migliorati, Mauro
Palumbo, Luigi
Vaccaro, Vittorio
author_sort Persichelli, Serena
collection CERN
description In this paper, we discuss the electromagnetic interaction between a point charge travelling inside a waveguide of elliptical cross section, and the waveguide itself. By using a convenient expansion of the Mathieu functions, useful in particular for treating a variety of problems in applied mathematics and physics with elliptic geometry, we first obtain the longitudinal electromagnetic field of a point charge (Green function) in free space in terms of elliptical coordinates. This expression allows, then, to calculate the scattered field due to the boundary conditions in our geometry. By summing the contribution of the direct or primary field and the indirect field scattered by the boundary, after a careful choice of some expansion expressions, we derive a novel formula of the longitudinal electric field, in any transverse position of the elliptical cross section, generated by the charge moving along the longitudinal axis of the waveguide. The obtained expression is represented in a closed form, it can be differentiated and integrated, it can be used to fully describe the radiation process of a particle beam travelling inside a waveguide of elliptical cross section, and it is valid for any elliptic geometry. The equations are used to evaluate the coupling impedance due to indirect space charge in case of elliptical geometry. In addition, they are useful as preliminary studies for the determination of the coupling impedance in different cases involving elliptic vacuum chambers, as, for example, the effect of the finite conductivity of the beam pipe wall or the geometrical variation of the vacuum chamber due to elliptic step transitions existing in some accelerators.
id cern-2287796
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling cern-22877962019-09-30T06:29:59Zdoi:10.1103/PhysRevAccelBeams.20.101004http://cds.cern.ch/record/2287796engPersichelli, SerenaBiancacci, NicoloMigliorati, MauroPalumbo, LuigiVaccaro, VittorioElectromagnetic fields and Green functions in elliptical vacuum chambersAccelerators and Storage RingsIn this paper, we discuss the electromagnetic interaction between a point charge travelling inside a waveguide of elliptical cross section, and the waveguide itself. By using a convenient expansion of the Mathieu functions, useful in particular for treating a variety of problems in applied mathematics and physics with elliptic geometry, we first obtain the longitudinal electromagnetic field of a point charge (Green function) in free space in terms of elliptical coordinates. This expression allows, then, to calculate the scattered field due to the boundary conditions in our geometry. By summing the contribution of the direct or primary field and the indirect field scattered by the boundary, after a careful choice of some expansion expressions, we derive a novel formula of the longitudinal electric field, in any transverse position of the elliptical cross section, generated by the charge moving along the longitudinal axis of the waveguide. The obtained expression is represented in a closed form, it can be differentiated and integrated, it can be used to fully describe the radiation process of a particle beam travelling inside a waveguide of elliptical cross section, and it is valid for any elliptic geometry. The equations are used to evaluate the coupling impedance due to indirect space charge in case of elliptical geometry. In addition, they are useful as preliminary studies for the determination of the coupling impedance in different cases involving elliptic vacuum chambers, as, for example, the effect of the finite conductivity of the beam pipe wall or the geometrical variation of the vacuum chamber due to elliptic step transitions existing in some accelerators.CERN-ACC-NOTE-2017-0056oai:cds.cern.ch:22877962017-10-03
spellingShingle Accelerators and Storage Rings
Persichelli, Serena
Biancacci, Nicolo
Migliorati, Mauro
Palumbo, Luigi
Vaccaro, Vittorio
Electromagnetic fields and Green functions in elliptical vacuum chambers
title Electromagnetic fields and Green functions in elliptical vacuum chambers
title_full Electromagnetic fields and Green functions in elliptical vacuum chambers
title_fullStr Electromagnetic fields and Green functions in elliptical vacuum chambers
title_full_unstemmed Electromagnetic fields and Green functions in elliptical vacuum chambers
title_short Electromagnetic fields and Green functions in elliptical vacuum chambers
title_sort electromagnetic fields and green functions in elliptical vacuum chambers
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevAccelBeams.20.101004
http://cds.cern.ch/record/2287796
work_keys_str_mv AT persichelliserena electromagneticfieldsandgreenfunctionsinellipticalvacuumchambers
AT biancaccinicolo electromagneticfieldsandgreenfunctionsinellipticalvacuumchambers
AT miglioratimauro electromagneticfieldsandgreenfunctionsinellipticalvacuumchambers
AT palumboluigi electromagneticfieldsandgreenfunctionsinellipticalvacuumchambers
AT vaccarovittorio electromagneticfieldsandgreenfunctionsinellipticalvacuumchambers