Volume 476 - 42nd International Conference on High Energy Physics (ICHEP2024) - Accelerators: Physics, Performance, and R&D for Future Facilities
nuSTORM: neutrino physics on the path to the muon collider
P. Jurj
Full text: pdf
Pre-published on: January 31, 2025
Published on: April 29, 2025
Abstract
The nuSTORM facility enables innovative neutrino physics studies through the decay of muons
circulating in a storage ring. The well-defined composition and energy spectra of the neutrino beam
from the decays of muons, combined with precise muon flux measurements, facilitate a diverse
research program probing fundamental neutrino properties. nuSTORM has been optimized to
store muons with momentum tunable from 1 to 6 GeV/c, enabling precise measurements of 𝜈 𝜇 A
and 𝜈 e A scattering over energy ranges relevant for long-baseline experiments. It also allows
for highly sensitive searches for exotic processes and studies of short-baseline flavor transitions
exceeding the reach of already planned experiments. As a technology testbed for high-brightness
muon beams, nuSTORM is on the path towards a multi-TeV muon collider and could be part of
a test-facility serving a muon-cooling demonstrator. nuSTORM’s status, physics capabilities and
potential as a muon collider test-facility will be presented.
DOI: https://doi.org/10.22323/1.476.0825
How to cite

Metadata are provided both in article format (very similar to INSPIRE) as this helps creating very compact bibliographies which can be beneficial to authors and readers, and in proceeding format which is more detailed and complete.

Open Access
Creative Commons LicenseCopyright owned by the author(s) under the term of the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 International License.