A muon experimental facility, known as the Muon Science Establishment (MUSE), is one of the user facilities at the Japan Proton Accelerator Research Complex, along with those for neutrons, hadrons, and neutrinos. The MUSE facility is integrated into the Materials and Life Science Facility building in which a high-energy proton beam that is shared with a neutron experiment facility delivers a variety of muon beams for research covering diverse scientific fields. In this review, we present the current status of MUSE, which is still in the process of being developed into its fully fledged form
The authors describe the current status of the research within the Muon Collaboration towards realiz...
This document contains a description of a multi-year national R&D program aimed at completing a ...
An accelerator complex that can produce ultra-intense beams of muons presents many opportunities to ...
A muon experimental facility, known as the Muon Science Establishment (MUSE), is one of the user fac...
AbstractThe muon science facility (MUSE) is located in the Materials and Life Science Facility (MLF)...
At the J-PARC muon facility (MUSE), new beamlines started operation recently. H-line is a high-inten...
The world strongest pulsed muon facility will be established in 2007 as one of five experimental fac...
The Materials and Life Science Experimental Facility (MLF) is the major neutron and muon quantum bea...
A significant worldwide R and D effort is presently directed toward solving the technical challenges...
A significant worldwide R & D effort is presently directed toward solving the technical challen...
The design of a Neutrino Factory (NF) has been the subject of several physics studies. For a NF base...
A significant worldwide R&D effort is presently directed toward solving the technical challenges...
Significant progress has been made in recent years in R&D towards a neutrino factory and muon co...
This document contains a description of a multi-year national R&D program aimed at completing a ...
AbstractThe Japan Proton Acceleration Research Complex (J-PARC) has started supplying proton beams f...
The authors describe the current status of the research within the Muon Collaboration towards realiz...
This document contains a description of a multi-year national R&D program aimed at completing a ...
An accelerator complex that can produce ultra-intense beams of muons presents many opportunities to ...
A muon experimental facility, known as the Muon Science Establishment (MUSE), is one of the user fac...
AbstractThe muon science facility (MUSE) is located in the Materials and Life Science Facility (MLF)...
At the J-PARC muon facility (MUSE), new beamlines started operation recently. H-line is a high-inten...
The world strongest pulsed muon facility will be established in 2007 as one of five experimental fac...
The Materials and Life Science Experimental Facility (MLF) is the major neutron and muon quantum bea...
A significant worldwide R and D effort is presently directed toward solving the technical challenges...
A significant worldwide R & D effort is presently directed toward solving the technical challen...
The design of a Neutrino Factory (NF) has been the subject of several physics studies. For a NF base...
A significant worldwide R&D effort is presently directed toward solving the technical challenges...
Significant progress has been made in recent years in R&D towards a neutrino factory and muon co...
This document contains a description of a multi-year national R&D program aimed at completing a ...
AbstractThe Japan Proton Acceleration Research Complex (J-PARC) has started supplying proton beams f...
The authors describe the current status of the research within the Muon Collaboration towards realiz...
This document contains a description of a multi-year national R&D program aimed at completing a ...
An accelerator complex that can produce ultra-intense beams of muons presents many opportunities to ...