Magnet design for an ultralow emittance storage ring

The Iranian Light Source Facility (ILSF) is a new 3 GeV synchrotron radiation laboratory which is in the design stage. The ILSF storage ring (SR) is based on a Five-Bend Achromat (5BA) lattice providing an ultra-low beam emittance of 0.48 nm rad. The ring is comprised of 100 pure dipole magnets, 320...

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Main Authors: F. Saeidi, M. Razazian, J. Rahighi, R. Pourimani
格式: Article
語言:English
出版: American Physical Society 2016-03-01
叢編:Physical Review Accelerators and Beams
在線閱讀:http://doi.org/10.1103/PhysRevAccelBeams.19.032401
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author F. Saeidi
M. Razazian
J. Rahighi
R. Pourimani
author_facet F. Saeidi
M. Razazian
J. Rahighi
R. Pourimani
author_sort F. Saeidi
collection DOAJ
description The Iranian Light Source Facility (ILSF) is a new 3 GeV synchrotron radiation laboratory which is in the design stage. The ILSF storage ring (SR) is based on a Five-Bend Achromat (5BA) lattice providing an ultra-low beam emittance of 0.48 nm rad. The ring is comprised of 100 pure dipole magnets, 320 quadrupoles, and 320 sextupoles with additional coils for dipole and skew quadrupole correctors. In this paper, we present some design features of the SR magnets and discuss the detailed physical design of these electromagnets. The related electrical and cooling calculations and mechanical design issues have been investigated as well.
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spelling doaj.art-c9f6b23854834a2d9f44e9ee0a745f4c2022-12-22T01:04:43ZengAmerican Physical SocietyPhysical Review Accelerators and Beams2469-98882016-03-0119303240110.1103/PhysRevAccelBeams.19.032401Magnet design for an ultralow emittance storage ringF. SaeidiM. RazazianJ. RahighiR. PourimaniThe Iranian Light Source Facility (ILSF) is a new 3 GeV synchrotron radiation laboratory which is in the design stage. The ILSF storage ring (SR) is based on a Five-Bend Achromat (5BA) lattice providing an ultra-low beam emittance of 0.48 nm rad. The ring is comprised of 100 pure dipole magnets, 320 quadrupoles, and 320 sextupoles with additional coils for dipole and skew quadrupole correctors. In this paper, we present some design features of the SR magnets and discuss the detailed physical design of these electromagnets. The related electrical and cooling calculations and mechanical design issues have been investigated as well.http://doi.org/10.1103/PhysRevAccelBeams.19.032401
spellingShingle F. Saeidi
M. Razazian
J. Rahighi
R. Pourimani
Magnet design for an ultralow emittance storage ring
Physical Review Accelerators and Beams
title Magnet design for an ultralow emittance storage ring
title_full Magnet design for an ultralow emittance storage ring
title_fullStr Magnet design for an ultralow emittance storage ring
title_full_unstemmed Magnet design for an ultralow emittance storage ring
title_short Magnet design for an ultralow emittance storage ring
title_sort magnet design for an ultralow emittance storage ring
url http://doi.org/10.1103/PhysRevAccelBeams.19.032401
work_keys_str_mv AT fsaeidi magnetdesignforanultralowemittancestoragering
AT mrazazian magnetdesignforanultralowemittancestoragering
AT jrahighi magnetdesignforanultralowemittancestoragering
AT rpourimani magnetdesignforanultralowemittancestoragering