Muon colliders potential to provide a probe for fundamental particle physics is very interesting. To obtain the needed collider luminosity, the phase space volume must be greatly reduced within the muon life time. The Ionization cooling is the preferred method used to compress the phase space and reduce the emittance to obtain high luminosity muon beams. The authors note that, the ionization losses results not only in damping, but also heating. They discuss methods used including moments methods, Focker Plank Equation, and Multi Particle Codes. In addition they show how a simple analysis permits us to estimate the most part of the optimal system parameters, such as optimal damping rates, length of the system and energy
Ionization cooling is the preferred method for reducing the emittance of muon beams in a muon collid...
High-brightness muon beams of energy comparable to those produced by state-of-the-art electron, prot...
Muon beams of low emittance provide the basis for the intense, well-characterized neutrino beams nec...
Muon Dynamics and beam cooling methods for muon colliders are presented. Formulations and effects of...
Muon Cooling is the key factor in building of a Muon collider, (to a less degree) Muon storage ring,...
The muon beams in a high luminosity muon collider are produced with a very large emittance. The proc...
Muon colliders have the potential to carry the search for new phenomena to energies well beyond the ...
Muon colliders have the potential to carry the search for new phenomena to energies well beyond the ...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
Muon colliders have the potential to carry the search for new phenomena to energies well beyond the ...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
Adviser: Bela Erdelyi.Muon colliders have been proposed for the next generation of particle accelera...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
High-brightness muon beams of energy comparable to those produced by state-of-the-art electron, prot...
Ionization cooling is the preferred method for reducing the emittance of muon beams in a muon collid...
High-brightness muon beams of energy comparable to those produced by state-of-the-art electron, prot...
Muon beams of low emittance provide the basis for the intense, well-characterized neutrino beams nec...
Muon Dynamics and beam cooling methods for muon colliders are presented. Formulations and effects of...
Muon Cooling is the key factor in building of a Muon collider, (to a less degree) Muon storage ring,...
The muon beams in a high luminosity muon collider are produced with a very large emittance. The proc...
Muon colliders have the potential to carry the search for new phenomena to energies well beyond the ...
Muon colliders have the potential to carry the search for new phenomena to energies well beyond the ...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
Muon colliders have the potential to carry the search for new phenomena to energies well beyond the ...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
Adviser: Bela Erdelyi.Muon colliders have been proposed for the next generation of particle accelera...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
The use of accelerated beams of electrons, protons or ions has furthered the development of nearly e...
High-brightness muon beams of energy comparable to those produced by state-of-the-art electron, prot...
Ionization cooling is the preferred method for reducing the emittance of muon beams in a muon collid...
High-brightness muon beams of energy comparable to those produced by state-of-the-art electron, prot...
Muon beams of low emittance provide the basis for the intense, well-characterized neutrino beams nec...