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Neutrino Factory and Muon Collider Collaboration R and D Program

Neutrino Factory and Muon Collider Collaboration R and D Program
Author:
Publisher:
Total Pages: 5
Release: 2000
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ISBN:

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The Neutrino Factory and Muon Collider Collaboration (MC) comprises some 140 scientists and engineers located at U.S. National Laboratories and Universities, and at a number of non-U.S. research institutions. In the past year, the MC R and D program has shifted its focus mainly toward the design issues related to the development of a Neutrino Factory based on a muon storage ring. In this paper the status of the various R and D activities is described, and future plans are outlined.


Neutrino Factory and Muon Collider Collaboration R and D Activities

Neutrino Factory and Muon Collider Collaboration R and D Activities
Author:
Publisher:
Total Pages: 5
Release: 2001
Genre:
ISBN:

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The Neutrino Factory and Muon Collider Collaboration (MC) comprises about 140 U.S. and non-U.S. accelerator and particle physicists. The MC is carrying out an R and D program aimed at validating the critical design concepts required for the construction of such machines. We are committed to encouraging international cooperation and coordination of the R and D effort. Main activities of the MC include a Targetry program, a MUCOOL program, a component development program, and a theory and simulation effort. Moreover, the MC has participated in several feasibility studies for a complete Neutrino Factory facility, with the aim of identifying any additional R and D activities needed to prepare a Zeroth-order Design Report (ZDR) in about two years and a Conceptual Design report (CDR) about two years thereafter. In this paper, the R and D goals in each area will be indicated, and the present status and future plans of the R and D program will be described.


Status of Neutrino Factory R & D Within the Muon Collaboration

Status of Neutrino Factory R & D Within the Muon Collaboration
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Release: 2004
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ISBN:

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The authors describe the current status of the research within the Muon Collaboration towards realizing a Neutrino Factory. The authors describe briefly the physics motivation behind the neutrino factory approach to studying neutrino oscillations and the longer term goal of building the Muon Collider. The benefits of a step by step staged approach of building a proton driver, collecting and cooling muons followed by the acceleration and storage of cooled muons are emphasized. Several usages of cooled muons open up at each new stage in such an approach and new physics opportunities are realized at the completion of each stage.


Status of Neutrino Factory and Muon Collider R and D.

Status of Neutrino Factory and Muon Collider R and D.
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Total Pages: 5
Release: 2001
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ISBN:

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A significant worldwide R and D effort is presently directed toward solving the technical challenges of producing, cooling, accelerating, storing, and eventually colliding beams of muons. Its primary thrust is toward issues critical to a Neutrino Factory, for which R and D efforts are under way in the U.S., via the Neutrino Factory and Muon Collider Collaboration (MC); in Europe, centered at CERN; and in Japan, at KEK. Under study and experimental development are production targets handling intense proton beams (1-4 MW), phase rotation systems to reduce beam energy spread, cooling channels to reduce transverse beam emittance for the acceleration system, and storage rings where muon decays in a long straight section provide a neutrino beam for a long-baseline (3000 km) experiment. Critical experimental activities include development of very high gradient normal conducting RF (NCRF) and superconducting RF (SCRF) cavities, high-power liquid-hydrogen absorbers, and high-field superconducting solenoids. Components and instrumentation that tolerate the intense decay products of the muon beam are being developed for testing. For a high-luminosity collider, muons must be cooled longitudinally as well as transversely, requiring an emittance exchange scheme. In addition to the experimental R and D effort, sophisticated theoretical and simulation tools are needed for the design. Here, the goals, present status, and future R and D plans in these areas will be described.


Neutrino Factory R & D in the U.S.

Neutrino Factory R & D in the U.S.
Author:
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Total Pages: 5
Release: 2003
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ISBN:

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We report here on the technical progress and R & D plans of the U.S. Neutrino Factory and Muon Collider Collaboration. Programs in targetry, cooling, acceleration, and simulations are covered. U.S. activities in support of the international Muon Ionization Cooling Experiment (MICE) are also described.


AN R AND D PROGRAM FOR TARGETRY AND CAPTURE AT A NEUTRINO FACTORY MUON COLLIDER SOURCE.

AN R AND D PROGRAM FOR TARGETRY AND CAPTURE AT A NEUTRINO FACTORY MUON COLLIDER SOURCE.
Author: A.BERNADON HASSENEIN (A.BESHEARS, D. L.BROW.)
Publisher:
Total Pages: 8
Release: 2003
Genre:
ISBN:

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The need for intense muon beams for muon colliders and for neutrino factories based on muon storage rings leads to a concept of 1-4 MW proton beams incident on a moving target that is inside a 20-T solenoid magnet, with a mercury jet as a preferred example. Novel technical issues for such a system include disruption of the mercury jet by the proton beam and distortion of the jet on entering the solenoid, as well as more conventional issues of materials lifetime and handling of activated materials in an intense radiation environment. As part of the R & D program of the Neutrino Factory and Muon Collider Collaboration, an R & D effort related to targetry is being performed within the context of experiment E951 at Brookhaven National Laboratory, first results of which are reported here.


Recent Progress in Neutrino Factory and Muon Collider Research Within the Muon Collaboration

Recent Progress in Neutrino Factory and Muon Collider Research Within the Muon Collaboration
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Total Pages: 812
Release: 2003
Genre:
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We describe the status of our effort to realize a first neutrino factory and the progress made in understanding the problems associated with the collection and cooling of muons towards that end. We summarize the physics that can be done with neutrino factories as well as with intense cold beams of muons. The physics potential of muon colliders is reviewed, both as Higgs Factories and compact high energy lepton colliders. The status and timescale of our research and development effort is reviewed as well as the latest designs in cooling channels including the promise of ring coolers in achieving longitudinal and transverse cooling simultaneously. We detail the efforts being made to mount an international cooling experiment to demonstrate the ionization cooling of muons.


R & D Toward a Neutrino Factory and Muon Collider

R & D Toward a Neutrino Factory and Muon Collider
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Release: 2011
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Significant progress has been made in recent years in R & D towards a neutrino factory and muon collider. The U.S. Muon Accelerator Program (MAP) has been formed recently to expedite the R & D efforts. This paper will review the U.S. MAP R & D programs for a neutrino factory and muon collider. Muon ionization cooling research is the key element of the program. The first muon ionization cooling demonstration experiment, MICE (Muon Ionization Cooling Experiment), is under construction now at RAL (Rutherford Appleton Laboratory) in the UK. The current status of MICE will be described.