In this note a scheme for the collection, phase rotation and cooling of muons for a neutrino factory is reported. The scheme is sufficiently generic to be site independent also if some particular choices are influenced by the CERN design. The system discussed in this note is worked on as a possible alternative to the induction linac scheme [1]. The results presented assume the following overall set-up: the proton driver is constituted by a 2.2 GeV superconducting linac [2] followed by an accumulator and compressor ring [3]; the muon re-circulator and decay ring are assumed as described in PJK scenario [4]
Muon ionization cooling is the only practical method for preparing high-brilliance beams needed for ...
The (International Design Report) IDR neutrino factory scenario for capture, bunching, phase-energy ...
An ionization cooling channel is a tightly spaced lattice containing absorbers for reducing the mome...
We present simulation work performed at CERN and collaborating institutes concerning the muon front-...
The neutrino factory[1-3] consists of a target section where pions are produced and captured in a so...
The Neutrino Factory produces high-energy neutrino beams with a well-defined flavour content and ene...
In a muon acceleration facility such as a Neutrino Fac-tory or Muon Collider, the muons created from...
A conceptual design of a muon acceleration scheme based on recirculating superconducting linacs is p...
A complete scheme for production, cooling, acceleration, and ring for a 1.5 TeV center of mass muon ...
A complete scheme for production and cooling a muon beam for three specified muon colliders is prese...
Intense muon beams have many potential applications, including neutrino factories and muon colliders...
Within the framework of the Fermilab Muon Collider Task Force, the possibility of developing a dedic...
Development is necessary in a large number of technologies before a Neutrino Factory complex can be ...
Outstanding areas of ambiguity within our present understanding of the nature and behaviour of neutr...
In the past few years, the concept of a high intensity muon storage ring has been pursued as an opti...
Muon ionization cooling is the only practical method for preparing high-brilliance beams needed for ...
The (International Design Report) IDR neutrino factory scenario for capture, bunching, phase-energy ...
An ionization cooling channel is a tightly spaced lattice containing absorbers for reducing the mome...
We present simulation work performed at CERN and collaborating institutes concerning the muon front-...
The neutrino factory[1-3] consists of a target section where pions are produced and captured in a so...
The Neutrino Factory produces high-energy neutrino beams with a well-defined flavour content and ene...
In a muon acceleration facility such as a Neutrino Fac-tory or Muon Collider, the muons created from...
A conceptual design of a muon acceleration scheme based on recirculating superconducting linacs is p...
A complete scheme for production, cooling, acceleration, and ring for a 1.5 TeV center of mass muon ...
A complete scheme for production and cooling a muon beam for three specified muon colliders is prese...
Intense muon beams have many potential applications, including neutrino factories and muon colliders...
Within the framework of the Fermilab Muon Collider Task Force, the possibility of developing a dedic...
Development is necessary in a large number of technologies before a Neutrino Factory complex can be ...
Outstanding areas of ambiguity within our present understanding of the nature and behaviour of neutr...
In the past few years, the concept of a high intensity muon storage ring has been pursued as an opti...
Muon ionization cooling is the only practical method for preparing high-brilliance beams needed for ...
The (International Design Report) IDR neutrino factory scenario for capture, bunching, phase-energy ...
An ionization cooling channel is a tightly spaced lattice containing absorbers for reducing the mome...