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Physics Opportunities for the Fermilab Booster Replacement

High Energy Physics - Phenomenology 2022-03-09 v1 High Energy Physics - Experiment Accelerator Physics

Abstract

This white paper presents opportunities afforded by the Fermilab Booster Replacement and its various options. Its goal is to inform the design process of the Booster Replacement about the accelerator needs of the various options, allowing the design to be versatile and enable, or leave the door open to, as many options as possible. The physics themes covered by the paper include searches for dark sectors and new opportunities with muons.

Keywords

Cite

@article{arxiv.2203.03925,
  title  = {Physics Opportunities for the Fermilab Booster Replacement},
  author = {John Arrington and Joshua Barrow and Brian Batell and Robert Bernstein and Nikita Blinov and S. J. Brice and Ray Culbertson and Patrick deNiverville and Vito Di Benedetto and Jeff Eldred and Angela Fava and Laura Fields and Alex Friedland and Andrei Gaponenko and Corrado Gatto and Stefania Gori and Roni Harnik and Richard J. Hill and Daniel M. Kaplan and Kevin J. Kelly and Mandy Kiburg and Tom Kobilarcik and Gordan Krnjaic and Gabriel Lee and B. R. Littlejohn and W. C. Louis and Pedro Machado and Anna Mazzacane and Petra Merkel and William M. Morse and David Neuffer and Evan Niner and Zarko Pavlovic and William Pellico and Ryan Plestid and Maxim Pospelov and Eric Prebys and Yannis K. Semertzidis and M. H. Shaevitz and P. Snopok and M. J. Syphers and Rex Tayloe and R. T. Thornton and Oleksandr Tomalak and M. Toups and Nhan Tran and Yu-Dai Tsai and Richard Van de Water and Katsuya Yonehara and Jacob Zettlemoyer and Yi-Ming Zhong and Robert Zwaska},
  journal= {arXiv preprint arXiv:2203.03925},
  year   = {2022}
}

Comments

Snowmass white paper

R2 v1 2026-06-24T10:05:40.562Z