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Experimental modelling of the dipole magnet for the electron storage ring DELSY

In the Joint Institute for Nuclear Research (Dubna) the project of Dubna Electron Synchrotron (DELSY) with an electron energy of 1.2 GeV is developed. The electron storage ring in the DELSY project is planned to be created on the basis of magnetic elements, which were used earlier in the storage rin...

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Detalles Bibliográficos
Autores principales: Meshkov, I N, Morozov, N A, Syresin, E M
Lenguaje:rus
Publicado: 2003
Materias:
Acceso en línea:http://cds.cern.ch/record/747092
Descripción
Sumario:In the Joint Institute for Nuclear Research (Dubna) the project of Dubna Electron Synchrotron (DELSY) with an electron energy of 1.2 GeV is developed. The electron storage ring in the DELSY project is planned to be created on the basis of magnetic elements, which were used earlier in the storage ring AmPS (NIKHEF, Amsterdam). The optics of the ring is necessary to be changed, its perimeter to be reduced approximately in one and a half time, the energy of electrons to be increased. The paper is devoted to the development of a modified dipole magnet of the storage ring. The preliminary estimation of geometry of the magnet pole is carried out by means of computer modelling using two- and three- dimensional codes of the magnetic field calculation SUPERFISH and RADIA. The experimental stand for the measurements of the dipole magnetic field is described. As the result of calculational and experimental modelling for the dipole magnet, the geometry of its poles was estimated, providing in the horizontal aperture +- 30 mm and in the magnet working field range 0.9-1.2 T a relative accuracy of shaping of the longitudinal field integral of +- 5 centre dot 10 sup - sup 4.