#acl IDSAcceleratorAdminGroup:read,write IDSAcceleratorGroup:read IDSUsersGroup:read All:read
= Work Plan =
Also see the document [[attachment:FrontPage/Documentation/IDS-NF-004-v1.0.pdf|Initial Division of Repsonsibilities within the Accelerator Working Group]]
I. Proton Driver
A. Design of at least one proton driver system, with sufficient study to demonstrate that the specifications are met. All components should be designed and simulated to a sufficient extent that there is general agreement that it would be possible to make them.<
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'''Deliverable:''' Description of the facility. Lattice designs and simulations for any non-standard components.
A. Design of additional proton driver systems, for cost and performance comparison.<
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'''Deliverable:''' Sufficient information for making comparison.
I. Target [Coordinators: C. Densham (RAL), H. Kirk (BNL)]
A. Analysis of MERIT data to determine maximum length of proton driver bunch train before pion production is reduced.<
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'''Deliverable:''' Maximum bunch train length.<
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'''Target date:''' June 2008.<
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'''Responsible person:''' H. Kirk.
A. Engineering of target infrastructure.<
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'''Deliverable:''' Design details sufficient for costing.<
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'''Responsible person:''' H. Kirk.
I. Front End [Coordinators: C. Rogers (ASTeC), D. Neuffer (Fermilab)]
A. MUCOOL experiments studying relationship between magnetic fields on room-temperature 200 MHz cavities, gradient in those cavities, and magnetic field orientation.<
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'''Deliverable:''' Paper describing relationship between maximum allowed magnetic fields, cavity gradients, and orientations.<
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A. Re-design of front end to meet field requirements from III.A.
1. Produce lattice design.<
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'''Deliverable:''' ICOOL input files.<
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'''Depends on:''' III.A.
1. Tracking through lattice.<
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'''Deliverable:''' Output from ICOOL tracking, analysis to determine transmission into accelerator acceptance.<
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'''Depends on:''' III.B.1.
I. Acceleration [Coordinators: A. Bogacz (JLab), J. Pozimski (ICL)]
A. Normal-conducting acceleration from cooling to superconducting linac, matched to both of these systems.
1. Lattice design.<
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'''Deliverable:''' ICOOL lattice file.<
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'''Depends on:''' III.B.1, IV.B.1.<
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'''Status:''' Unnecessary due to results from IV.B.1.
1. Tracking through lattice.<
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'''Deliverable:''' Output from ICOOL tracking, starting with results from III.B.2, analysis to determine transmission and emittance growth.<
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'''Depends on:''' IV.A.1, III.B.2.<
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'''Status:''' Unnecessary due to results from IV.B.1.
A. Superconducting pre-accelerator linac.
1. Lattice design.<
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'''Deliverable:''' Lattice file.<
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'''Target date:''' March 2008.<
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'''Responsible person:''' A. Bogacz.<
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'''Status:''' Complete.
1. Tracking idealized lattice.<
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'''Deliverable:''' Results demonstrating transmission and quantifying emittance growth for full transverse and longitudinal acceptance.<
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'''Depends on:''' IV.B.1.<
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1. Propagate distribution from normal-conducting accelerator<
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'''Deliverable:''' Output distribution, analysis of emittance growth and transmission.<
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'''Depends on:''' IV.A.2, IV.B.1.
A. Dogbone RLAs.
1. Mid-linac injection system, including all chromatic corrections.<
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'''Deliverable:''' Lattice file.<
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'''Target date:''' March 2008.<
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'''Responsible person:''' A. Bogacz.<
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'''Depends on:''' Linac design from IV.C.2.
1. Full lattice designs, including chromatic correction, switchyard layout, and arc crossings.<
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'''Deliverable:''' Lattice file.<
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'''Responsible person:''' A. Bogacz.
1. Engineering of switchyard and arc crossings.<
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'''Deliverable:''' Sufficiently detailed design and drawings to demonstrate feasibility.
1. Transfer line between RLAs.<
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'''Deliverable:''' Lattice file.<
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'''Depends on:''' IV.C.1, IV.C.2.
1. Tracking idealized lattice.<
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'''Deliverable:''' Results demonstrating transmission and quantifying emittance growth for full transverse and longitudinal acceptance.<
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'''Depends on:''' IV.C.2.
1. Propagate distribution from previous stages.<
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'''Deliverable:''' Output distribution, analysis of emittance growth and transmission.<
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'''Depends on:''' IV.B.2, IV.C.1, IV.C.2, IV.C.4.
I. Linear non-scaling FFAG [Coordinators: J. S. Berg (BNL), S. Machida (RAL)]
A. Main ring lattice design.<
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'''Deliverable:''' Lattice description.<
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'''Target date:''' June 2008.<
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'''Responsible person:''' J. S. Berg.
A. Injection and extraction system lattice design.<
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'''Deliverable:''' Kicker field and timing requirements, magnet apertures.<
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'''Depends on:''' IV.D.1.<
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'''Responsible person:''' J. S. Berg.
A. Kicker hardware engineering.<
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'''Deliverable:''' Hardware description, including magnets and power supplies. Cost estimate.<
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'''Depends on:''' IV.D.2.
A. Transfer line from RLA to FFAG.<
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'''Deliverable:''' Lattice file.<
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'''Depends on:''' IV.C.2, IV.D.1, IV.D.2.
A. Tracking idealized lattice.<
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'''Deliverable:''' Results demonstrating transmission and quantifying emittance growth for full transverse and longitudinal acceptance.<
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'''Depends on:''' IV.D.1.
A. Propagate distribution from previous stages.<
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'''Deliverable:''' Output distribution, analysis of emittance growth and transmission.<
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'''Depends on:''' IV.C.6, IV.D.1, IV.D.2, IV.D.4.
I. Storage Ring [Coordinators: C. Prior (ASTeC), TBD]
A. Lattice design for 25 GeV rings, including injection and extraction.<
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'''Deliverable:''' Lattice file.
A. Transfer line from FFAG to storage ring.<
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'''Deliverable:''' Lattice file.<
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'''Depends on:''' IV.D.1, IV.D.2, V.A.
A. Tracking idealized lattice.<
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'''Deliverable:''' Results showing acceptance, emittance growth, losses, and flux distribution in production straights.<
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'''Depends on:''' V.A.
A. Propagate distribution from previous stages.<
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'''Deliverable:''' Results showing losses, flux distribution in production straights.<
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'''Depends on:''' IV.D.6, V.A, V.B.
I. Overall System
A. Engineering and cost estimate for muon accelerator systems.<
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'''Deliverable:''' Sufficient detail to estimate cost. Sufficient information for cost and performance optimization for front-end and acceleration systems.<
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'''Depends on:''' III.B.1, IV.A.1, IV.B.1, IV.C.1, IV.C.2, IV.C.3, IV.C.4, IV.D.1, IV.D.2, IV.D.3, IV.D.4, V.A, V.B.