Tuesday, October 2, 2007
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09:00
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Opening Remarks
(10')
Slides
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Weiren Chou (Fermilab)
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09:10
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14:30
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Lecture 2 – Sources & bunch compressors
(3h0')
Minutes
Slides
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Masao Kuriki (KEK)
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• e- gun
• e+ sources
• Polarized sources
• Bunch compressors
• Spin rotator
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Wednesday, October 3, 2007
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09:00
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Lecture 3 – Damping ring I
(3h0')
Problem Solutions
Problems
Slides
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Andrzej Wolski (Cockcroft Institute and University of Liverpool)
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• Role of damping rings
• High-level overview of structure, and
principles of operation
• Review of basic linear beam dynamics
• Damping ring lattice
• Radiation damping (derivation of damping
times, and the need for a
damping wiggler in LC damping rings)
• Quantum excitation and equilibrium beam
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Thursday, October 4, 2007
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09:00
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Lecture 3 – Damping ring II
(3h0')
Slides
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Andrzej Wolski (Cockcroft Institute and University of Liverpool)
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• Brief overview of technical systems
• R&D challenges for selected technical
components
injection/extraction kickers
damping wiggler
• Brief overview of beam dynamics issues
• Selected beam dynamics issues
impedance effects
electron cloud effects
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14:30
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Lecture 4 – Linac II
(3h0')
Paper
Slides
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Peter Tenenbaum (SLAC)
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• Linac lattice
• Emittance preservation
• RF field stability
• Wakefield and dampers
• HOMs
• Alignment issues
• Vibration issues
• Beam based alignment
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Friday, October 5, 2007
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09:00
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Lecture 5 – LLRF & high power RF
(3h0')
Homework
Slides
Support Material
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Stefan Simrock (DESY)
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• RF system overview
• LLRF
• Timing and synchronization
• Modulators
• Klystrons
• RF distribution
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Saturday, October 6, 2007
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09:00
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Lecture 6 – Superconducting RF I
(3h0')
Paper
Slides
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Kenji Saito (KEK)
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• Superconductivity basics
• SRF specifics and constraints
• Cavity design
• Cryogenics
• ILC cryomodules
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Sunday, October 7, 2007
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09:00
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Lecture 6 – Superconducting RF II
(3h0')
Slides
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Kenji Saito (KEK)
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• Material issues
• Cavity fabrication and tuning
• Surface preparation
• Gradient limit and spread
• Power Coupler
• HOM Couplers
• Slow and fast tuner
• ILC design
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14:30
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Lecture 8 – – Instrumentation & control I
(3h0')
Slides
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Marc Ross (SLAC)
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• Beam monitoring
• Precision instrumentation
• Feedback systems
• Energy stability
• Orbit control
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Monday, October 8, 2007
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09:00
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Lecture 8 – Instrumentation & control II
(1h30')
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Marc Ross (FNAL)
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• Electronics
• Data processing
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10:30
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Lecture 9 – Operations
(1h30')
Slides
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Marc Ross (FNAL)
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• Reliability
• Availability
• Remote control and global network
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Tuesday, October 9, 2007
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14:30
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Lecture 11 – Conventional facilities
(1h30')
Slides
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Atsushi Enomoto (KEK)
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• Overview
• Tunneling
• Site requirement
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16:00
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Lecture 12 - Physics & Detectors
(1h30')
Slides
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Jim Brau (U. Oregon)
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• Tera scale physics
• Physics beyond 1 TeV
• ILC vs. LHC
• Detectors
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19:00
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Banquet and Student Award Ceremony
(2h30')
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