Development of MQXF , the Nb 3 Sn Low-β Quadrupole for the HiLumi LHC

@inproceedings{Ferracin2016DevelopmentOM,
  title={Development of MQXF , the Nb 3 Sn Low-β Quadrupole for the HiLumi LHC},
  author={Paolo Ferracin and Giorgio Ambrosio and Michael Anerella and Amalia Ballarino and Hugues Bajas and Marta Bajko and Bernardo Bordini and R. P. Bossert and Daniel W. Cheng and D. R.GreilM. and Dietderich and Guram Chlachidze and Lance D. Cooley and H{\'e}l{\`e}ne Felice and Abhirup Ghosh and Ray Hafalia and Eddie Frank Holik and Susana Izquierdo Bermudez and Cedric Charrondiere and P................... and Grosclaude and Michael Guinchard and Mariusz Juchno and Steven Krave and Friedrich Lackner and Maxim Marchevsky and Vittorio. Marinozzi and F. S. de N{\'o}brega and L. Oberli and Hongke Pan and Jos{\'e} Carlos Carri{\'o}n P{\'e}rez and Herve Prin and Juho Rysti and Etienne Rochepault and G. L. Sabbi and Tiina Salmi and Jesse Schmalzle and Massimo Sorbi and Sandra Sequeira Lopes Tavares and Emilov Todesco and Peter Wanderer and Xiaofan Wang and Maojun Yu},
  year={2016}
}
The HiLumi LHC project has as the main objective to increase the LHC peak luminosity by a factor five and the integrated luminosity by a factor ten. This goal will be achieved mainly with a new Interaction Regions lay-out, which will allow a stronger focusing of the colliding beams. The target will be to reduce the beam size in the Interaction Points by a factor of two, which requires doubling the aperture of the low-β (or inner triplet) quadrupole magnets. The use of Nb3Sn superconducting… CONTINUE READING

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