Un champ central de 9T a été obtenu dans un dipole refroidi à 1,8K dans de l'hélium II à pression atmosphérique. Trois dipoles différents en Nb Ti sans fer ont atteint respectivement des champs centraux de 8, 8,6 et 9,1 T correspondant aux caractéristiques échantillons courts de leurs conducteurs à 1,8K. Dans l'hélium 1 à 4,3K, les champs centraux sont réduits de 1,5 à 2T. Des aimants de 10 teslas ont été conçus pour utiliser soit du Nb Ti à 1,8K soit du Nb3 Sn à 4,2K. Ils ont de très petites ouvertures (40 à 45 mm) de très grandes densités de courant dans le supraconducteur (plus de 1000 A/mm2) et un très faible rapport Cu/SC (~ 1). Des aimants à couches et à blocs ont été développés. Ils utilisent un câble du type Rutherford. Des cycles d...
The Next European Dipole (NED) Joint Research Activity was launched on 1 January 2004 to promote the...
This document presents an annual report on our long-term R&D grant for development of new technology...
The next generation particle accelerators will need to increase by an order of magnitude the center-...
Model dipole superconducting magnets with central fields above 8 tesla are being developed for futur...
This document presents an annual report on our long-term R&D grant for development of new technology...
L'amélioration des accélérateurs de particules passe notamment par la mise en ?uvre de technologies ...
The tera electronvolt superconducting linear accelerator TESLA is the only linear electron-positron ...
Superconducting accelerator bending magnets in the 4 to 5 tesla field range have been, or are being,...
The Tera Electronvolt Superconducting Linear Accelerator TESLA is the only linear electron-positron ...
The design study of the block type 15-Tesla RHQT Nb{sub 3}Al dipole magnet, and its merits over Nb{s...
Developing HTS dipole inserts producing fields larger than 5 T within 15 T Nb3Sn outserts is necessa...
Plans for LHC upgrade and for the final focalization of linear colliders call for large aperture and...
The high-luminosity large hadron collider (LHC) project at CERN entered into the production phase in...
The Superconducting Magnet Group at Lawrence Berkeley National Laboratory has been developing high-f...
The LHC magnet R&D Program has shown that the limit of NbTi technology at 1.8 K was in the range 10 ...
The Next European Dipole (NED) Joint Research Activity was launched on 1 January 2004 to promote the...
This document presents an annual report on our long-term R&D grant for development of new technology...
The next generation particle accelerators will need to increase by an order of magnitude the center-...
Model dipole superconducting magnets with central fields above 8 tesla are being developed for futur...
This document presents an annual report on our long-term R&D grant for development of new technology...
L'amélioration des accélérateurs de particules passe notamment par la mise en ?uvre de technologies ...
The tera electronvolt superconducting linear accelerator TESLA is the only linear electron-positron ...
Superconducting accelerator bending magnets in the 4 to 5 tesla field range have been, or are being,...
The Tera Electronvolt Superconducting Linear Accelerator TESLA is the only linear electron-positron ...
The design study of the block type 15-Tesla RHQT Nb{sub 3}Al dipole magnet, and its merits over Nb{s...
Developing HTS dipole inserts producing fields larger than 5 T within 15 T Nb3Sn outserts is necessa...
Plans for LHC upgrade and for the final focalization of linear colliders call for large aperture and...
The high-luminosity large hadron collider (LHC) project at CERN entered into the production phase in...
The Superconducting Magnet Group at Lawrence Berkeley National Laboratory has been developing high-f...
The LHC magnet R&D Program has shown that the limit of NbTi technology at 1.8 K was in the range 10 ...
The Next European Dipole (NED) Joint Research Activity was launched on 1 January 2004 to promote the...
This document presents an annual report on our long-term R&D grant for development of new technology...
The next generation particle accelerators will need to increase by an order of magnitude the center-...