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A New Interaction Region Design for the Super-B Factory
A final focus magnet design that uses super-ferric magnets is introduced for the SuperB interaction region. The baseline design has air-core super-conducting quadrupoles. This idea instead uses super-conducting wire in an iron yoke. The iron is in the shape of a Panofsky quadrupole and this allows t...
Autores principales: | , , , , , |
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Lenguaje: | eng |
Publicado: |
2010
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/1307896 |
_version_ | 1780921178090635264 |
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author | Sullivan, Michael Bertsche, Kirk Bettoni, Simona Paoloni, Eugenio Raimondi, Pantaleo Vobly, Pavel |
author_facet | Sullivan, Michael Bertsche, Kirk Bettoni, Simona Paoloni, Eugenio Raimondi, Pantaleo Vobly, Pavel |
author_sort | Sullivan, Michael |
collection | CERN |
description | A final focus magnet design that uses super-ferric magnets is introduced for the SuperB interaction region. The baseline design has air-core super-conducting quadrupoles. This idea instead uses super-conducting wire in an iron yoke. The iron is in the shape of a Panofsky quadrupole and this allows two quadrupoles to be sideby- side with no intervening iron as long as the gradients of the two quads are equal. This feature allows us to move in as close as possible to the collision point and minimize the beta functions in the interaction region. The superferric design has advantages as well as drawbacks and we will discuss these in the pape |
id | cern-1307896 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2010 |
record_format | invenio |
spelling | cern-13078962022-08-17T13:31:17Zhttp://cds.cern.ch/record/1307896engSullivan, MichaelBertsche, KirkBettoni, SimonaPaoloni, EugenioRaimondi, PantaleoVobly, PavelA New Interaction Region Design for the Super-B FactoryAccelerators and Storage RingsA final focus magnet design that uses super-ferric magnets is introduced for the SuperB interaction region. The baseline design has air-core super-conducting quadrupoles. This idea instead uses super-conducting wire in an iron yoke. The iron is in the shape of a Panofsky quadrupole and this allows two quadrupoles to be sideby- side with no intervening iron as long as the gradients of the two quads are equal. This feature allows us to move in as close as possible to the collision point and minimize the beta functions in the interaction region. The superferric design has advantages as well as drawbacks and we will discuss these in the papeoai:cds.cern.ch:13078962010 |
spellingShingle | Accelerators and Storage Rings Sullivan, Michael Bertsche, Kirk Bettoni, Simona Paoloni, Eugenio Raimondi, Pantaleo Vobly, Pavel A New Interaction Region Design for the Super-B Factory |
title | A New Interaction Region Design for the Super-B Factory |
title_full | A New Interaction Region Design for the Super-B Factory |
title_fullStr | A New Interaction Region Design for the Super-B Factory |
title_full_unstemmed | A New Interaction Region Design for the Super-B Factory |
title_short | A New Interaction Region Design for the Super-B Factory |
title_sort | new interaction region design for the super-b factory |
topic | Accelerators and Storage Rings |
url | http://cds.cern.ch/record/1307896 |
work_keys_str_mv | AT sullivanmichael anewinteractionregiondesignforthesuperbfactory AT bertschekirk anewinteractionregiondesignforthesuperbfactory AT bettonisimona anewinteractionregiondesignforthesuperbfactory AT paolonieugenio anewinteractionregiondesignforthesuperbfactory AT raimondipantaleo anewinteractionregiondesignforthesuperbfactory AT voblypavel anewinteractionregiondesignforthesuperbfactory AT sullivanmichael newinteractionregiondesignforthesuperbfactory AT bertschekirk newinteractionregiondesignforthesuperbfactory AT bettonisimona newinteractionregiondesignforthesuperbfactory AT paolonieugenio newinteractionregiondesignforthesuperbfactory AT raimondipantaleo newinteractionregiondesignforthesuperbfactory AT voblypavel newinteractionregiondesignforthesuperbfactory |