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Scientific program for the Forward Physics Facility

  • Jyotismita Adhikary
  • , Luis A. Anchordoqui
  • , Akitaka Ariga
  • , Tomoko Ariga
  • , Alan J. Barr
  • , Brian Batell
  • , Jianming Bian
  • , Jamie Boyd
  • , Matthew Citron
  • , Albert De Roeck
  • , Milind V. Diwan
  • , Jonathan L. Feng
  • , Christopher S. Hill
  • , Yu Seon Jeong
  • , Felix Kling*
  • , Steven Linden
  • , Toni Mäkelä
  • , Kostas Mavrokoridis
  • , Josh McFayden
  • , Hidetoshi Otono
  • Juan Rojo, Dennis Soldin, Anna Stasto, Sebastian Trojanowski, Matteo Vicenzi, Wenjie Wu
*Corresponding author for this work

Research output: Contribution to JournalReview articleAcademicpeer-review

Abstract

The recent direct detection of neutrinos at the LHC has opened a new window on high-energy particle physics and highlighted the potential of forward physics for groundbreaking discoveries. In the last year, the physics case for forward physics has continued to grow, and there has been extensive work on defining the Forward Physics Facility and its experiments to realize this physics potential in a timely and cost-effective manner. Following a 2-page Executive Summary, we first present the status of the FPF, beginning with the FPF’s unique potential to shed light on dark matter, new particles, neutrino physics, QCD, and astroparticle physics. We then summarize the current designs for the Facility and its experiments, FASER2, FASERν2, FORMOSA, and FLArE.

Original languageEnglish
Article number430
Pages (from-to)1-25
Number of pages25
JournalThe European Physical Journal C : Particles and Fields
Volume85
Issue number4
Early online date17 Apr 2025
DOIs
Publication statusPublished - Apr 2025

Bibliographical note

Publisher Copyright:
© The Author(s) 2025.

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