The Muon Ionization Cooling Experiment (MICE) is a channel of superconducting solenoid magnets. The magnets in MICE are around the RF cavities, absorbers (liquid or solid) and the primary particle detectors [1], [2]. The MICE superconducting solenoid system consists of eighteen coils that are grouped in three types of magnet assemblies. The cooling channel consists of two complete cell of an SFOFO cooling channel. Each cell consists of a focusing coil pair around an absorber and a coupling coil around a RF cavity that re-accelerates the muons to their original momentum. At the ends of the experiment are uniform field solenoids for the particle detectors and a set of matching coils used to match the muon beam to the cooling cells. Three abso...
The heart of the absorber focus coil (AFC) module for the muon ionization cooling experiment (MICE) ...
The purpose of the MICE spectrometer solenoid is to provide a uniform field for a scintillating fibe...
This report describes the design issues that are associated with a superconducting focusing solenoid...
This report describes the channel of superconductingsolenoids for the proposed international Muon Io...
This report describes the channel of superconducting solenoids for the proposed international Muon ...
This report describes the channel of superconducting solenoids for the proposed international Muon I...
The first superconducting magnets to be installed in the muon ionization cooling experiment (MICE) w...
This report describes the focusing solenoid for the proposed Muon Ionization Cooling Experiment (MIC...
This report describes a design for focusing solenoids for the low beta sections for the proposed Muo...
The muon ionization cooling experiment (MICE) consists of a target, a beam line, a pion decay channe...
The MICE coupling solenoids surround the RF cavities that are used to increase the longitudinal mome...
The Muon Ionization Cooling Experiment (MICE), an international collaboration sited at Rutherford Ap...
The Muon Ionization Cooling Experiment (MICE) willdemonstrate ionization cooling in a short section ...
The muon ionization cooling experiment (MICE) consists of a target, a beam line, a pion decay channe...
The Muon Ionization Cooling Experiment (MICE) will demonstrate ionization cooling in a short section...
The heart of the absorber focus coil (AFC) module for the muon ionization cooling experiment (MICE) ...
The purpose of the MICE spectrometer solenoid is to provide a uniform field for a scintillating fibe...
This report describes the design issues that are associated with a superconducting focusing solenoid...
This report describes the channel of superconductingsolenoids for the proposed international Muon Io...
This report describes the channel of superconducting solenoids for the proposed international Muon ...
This report describes the channel of superconducting solenoids for the proposed international Muon I...
The first superconducting magnets to be installed in the muon ionization cooling experiment (MICE) w...
This report describes the focusing solenoid for the proposed Muon Ionization Cooling Experiment (MIC...
This report describes a design for focusing solenoids for the low beta sections for the proposed Muo...
The muon ionization cooling experiment (MICE) consists of a target, a beam line, a pion decay channe...
The MICE coupling solenoids surround the RF cavities that are used to increase the longitudinal mome...
The Muon Ionization Cooling Experiment (MICE), an international collaboration sited at Rutherford Ap...
The Muon Ionization Cooling Experiment (MICE) willdemonstrate ionization cooling in a short section ...
The muon ionization cooling experiment (MICE) consists of a target, a beam line, a pion decay channe...
The Muon Ionization Cooling Experiment (MICE) will demonstrate ionization cooling in a short section...
The heart of the absorber focus coil (AFC) module for the muon ionization cooling experiment (MICE) ...
The purpose of the MICE spectrometer solenoid is to provide a uniform field for a scintillating fibe...
This report describes the design issues that are associated with a superconducting focusing solenoid...