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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...

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Detalles Bibliográficos
Autores principales: Sullivan, Michael, Bertsche, Kirk, Bettoni, Simona, Paoloni, Eugenio, Raimondi, Pantaleo, Vobly, Pavel
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1307896
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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
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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
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