The MUon Scattering Experiment, MUSE, at the Paul Scherrer Institute, Switzerland, investigates the proton charge radius puzzle, lepton universality, and two-photon exchange, via simultaneous measurements of elastic muon-proton and electron-proton scattering. The experiment uses the PiM1 secondary beam channel, which was designed for high precision pion scattering measurements. We review the properties of the beam line established for pions. We discuss the production processes that generate the electron and muon beams, and the simulations of these processes. Simulations of the π/μ/e beams through the channel using TURTLE and G4beamline are compared. The G4beamline simulation is then compared to several experimental measurements of the chann...
Results of simulations of pion production and power dissipation by 8 to 30 GeV proton beams in co-ax...
The proton radius puzzle is the difference between the proton radius as measured with electron scatt...
A novel single-particle technique to measure emittance has been developed and used to characterise s...
The proton radius puzzle is the disagreement between the much more precise radius determined from mu...
While consistent results for the charge radius of the proton have been extracted from elastic electr...
The proton radius puzzle is the difference between the proton radius as measured with electron scatt...
The root-mean-square (rms) radius of the proton charge is a fundamental quantity. In 2010, the studi...
The unexplained large discrepancy of the proton charge radius measurements with muonic hydrogen Lamb...
In 2018, a test run with muons in the North Area at CERN was performed, running parasitically downst...
The Muon Scattering Experiment at the Paul Scherrer Institute uses a mixed beam of electrons, muons,...
A novel single-particle technique to measure emittance has been developed and used to characterise s...
The international Muon Ionization Cooling Experiment (MICE), which is under construction at the Ruth...
The international Muon Ionization Cooling Experiment (MICE) will perform a systematic investigation ...
Results of simulations of pion production and power dissipation by 8 to 30 GeV proton beams in co-ax...
The proton radius puzzle is the difference between the proton radius as measured with electron scatt...
A novel single-particle technique to measure emittance has been developed and used to characterise s...
The proton radius puzzle is the disagreement between the much more precise radius determined from mu...
While consistent results for the charge radius of the proton have been extracted from elastic electr...
The proton radius puzzle is the difference between the proton radius as measured with electron scatt...
The root-mean-square (rms) radius of the proton charge is a fundamental quantity. In 2010, the studi...
The unexplained large discrepancy of the proton charge radius measurements with muonic hydrogen Lamb...
In 2018, a test run with muons in the North Area at CERN was performed, running parasitically downst...
The Muon Scattering Experiment at the Paul Scherrer Institute uses a mixed beam of electrons, muons,...
A novel single-particle technique to measure emittance has been developed and used to characterise s...
The international Muon Ionization Cooling Experiment (MICE), which is under construction at the Ruth...
The international Muon Ionization Cooling Experiment (MICE) will perform a systematic investigation ...
Results of simulations of pion production and power dissipation by 8 to 30 GeV proton beams in co-ax...
The proton radius puzzle is the difference between the proton radius as measured with electron scatt...
A novel single-particle technique to measure emittance has been developed and used to characterise s...