papers

Publications (9)

physics.atom-ph2021

Measurement of the muon transfer rate from muonic hydrogen to oxygen in the range 70-336 K

C. Pizzolotto, A. Sbrizzi, A. Adamczak +39

The first measurement of the temperature dependence of the muon transfer rate from muonic hydrogen to oxygen was performed by the FAMU collaboration in 2016. The results provide ev…

physics.ins-det2016

Steps towards the hyperfine splitting measurement of the muonic hydrogen ground state: pulsed muon beam and detection system characterization

A. Adamczak, G. Baccolo, D. Bakalov +52

The high precision measurement of the hyperfine splitting of the muonic-hydrogen atom ground state with pulsed and intense muon beam requires careful technological choices both in…

nucl-ex2020

First measurement of the temperature dependence of muon transfer rate from muonic hydrogen atoms to oxygen

FAMU Collaboration, E. Mocchiutti, A. Adamczak +39

We report the first measurement of the temperature dependence of muon transfer rate from p atoms to oxygen between 100 and 300 K. Data were obtained from the X-ray spectra of d…

physics.atom-ph2025

First operation of the FAMU experiment at the RIKEN-RAL high intensity muon beam facility

FAMU Collaboration, A. Adamczak, D. Bakalov +40

The FAMU experiment, supported and funded by the Italian Institute of Nuclear Physics (INFN) and by the Science and Technology Facilities Council (STFC), aims to perform the first…

physics.atom-ph2024

Investigating the Proton Structure: The FAMU experiment

A. Vacchi, A. Adamczak, D. Bakalov +46

The article gives the motivations for the measurement of the hyperfine splitting (hfs) in the ground state of muonic hydrogen to explore the properties of the proton at low momentu…

physics.ins-det2024

The muon beam monitor for the FAMU experiment: design, simulation, test and operation

R. Rossini, G. Baldazzi, S. Banfi +35

FAMU is an INFN-led muonic atom physics experiment based at the RIKEN-RAL muon facility at the ISIS Neutron and Muon Source (United Kingdom). The aim of FAMU is to measure the hype…