Among the projects currently under study for the next generation of particle accelerators, the muon collider represents a unique machine, which has the capability to provide leptonic collisions at energies of several TeV. The multi-TeV energy regime is as yet unexplored and holds a huge physical potential that will enable a novel research programme ranging from high precision measurements of known standard model processes to high-sensitivity searches for phenomena beyond the standard model. A multi-TeV muon collider will produce huge samples of Higgs bosons that will allow a precise determination of the Higgs boson properties, like its couplings to fermions and bosons and its trilinear and quartic self-couplings with unprecedented precision...
The direct s-channel coupling to Higgs bosons is 40000 times greater for muons than electrons; the c...
The CERN Large Hadron Collider (LHC) offers a unique opportunity to test the Standard Model of parti...
Muon colliders provide a unique route to deliver high energy collisions that enable discovery search...
International audienceIn the path towards a muon collider with center of mass energy of 10 TeV or mo...
Measuring the shape of the Higgs boson potential is of paramount importance, and will be a challengi...
Rare flavour-changing neutral-current transitions b → sμ+μ− probe higher energy scales than what is ...
Among the hadron and lepton colliders proposed for the future of HEP, a multi-TeV muon collider curr...
This paper presents a feasibility study aiming to estimate the precision achievable on the Higgs-to-...
Construction of the future muon collider tangential to the Large Hadron Collider will give opportuni...
The perspectives for the observation of the rare decay H -> mumu decay and the determination of the ...
We explore the sensitivity of directly testing the muon-Higgs coupling at a high-energy muon collide...
A muon collider represents the ideal machine to reach very high center-of-mass energies and luminosi...
We investigate the potential of a high-energy muon collider in measuring the muon Yukawa coupling (y...
The direct s-channel coupling to Higgs bosons is 40000 times greater for muons than electrons; the c...
The CERN Large Hadron Collider (LHC) offers a unique opportunity to test the Standard Model of parti...
Muon colliders provide a unique route to deliver high energy collisions that enable discovery search...
International audienceIn the path towards a muon collider with center of mass energy of 10 TeV or mo...
Measuring the shape of the Higgs boson potential is of paramount importance, and will be a challengi...
Rare flavour-changing neutral-current transitions b → sμ+μ− probe higher energy scales than what is ...
Among the hadron and lepton colliders proposed for the future of HEP, a multi-TeV muon collider curr...
This paper presents a feasibility study aiming to estimate the precision achievable on the Higgs-to-...
Construction of the future muon collider tangential to the Large Hadron Collider will give opportuni...
The perspectives for the observation of the rare decay H -> mumu decay and the determination of the ...
We explore the sensitivity of directly testing the muon-Higgs coupling at a high-energy muon collide...
A muon collider represents the ideal machine to reach very high center-of-mass energies and luminosi...
We investigate the potential of a high-energy muon collider in measuring the muon Yukawa coupling (y...
The direct s-channel coupling to Higgs bosons is 40000 times greater for muons than electrons; the c...
The CERN Large Hadron Collider (LHC) offers a unique opportunity to test the Standard Model of parti...
Muon colliders provide a unique route to deliver high energy collisions that enable discovery search...