P r o g r a m

Working groups

The working groups are related to the five areas defined at right. The working groups and chairs are:

Areas to be covered at the workshop include:
A. New theoretical and experimental developments in photo-injectors: diamond layers for secondary electron generation, electron pulse self-shaping for the generation of sub-picosecond electron pulses, superconducting RF gun.
B. Generation of high brightness electron beams from laser-plasma sources: Status, development programs and future possibilities.
C. Longitudinal compression of high brightness electron beams: chicanes, inverse free-electron lasers, velocity bunching.
D. Diagnostics for high brightness, high peak current beams: approaching the femtosecond frontier. Coherent radiation-based measurements, and ultra-fast time-domain measurements (e.g. RF sweepers).
E. Theory and modeling
F. Applications

—Free-electron lasers, ERLs, inverse Compton scattering sources
—Linear colliders and related HEP
—Advanced accelerators (wakefield accelerators, laser accelerators)

Ancient ruins near Erice
Workshop Schedule

Note: the invited talks are 25 minutes +5 minute discussion.

  Monday
Oct. 10
Tuesday
Oct. 11
Wednesday
Oct. 12
Thursday
Oct. 13
Friday
Oct. 14
8:30-9:15

Opening Workshop Organization

Travish
Shaftan Kishek 8:30-9:15
Working Group 1
final summaries
9:15-9:45 Stefan Reiche Krushelnick Bonifacio 9:15-10:00
Working group 2
final summaries
9:45-10:15 Sekutovicz Krafft Hogan Giannessi Coffee
10:15-10:30
Coffee
10:30-11:00 Luiten Uesaka Schacheter Giulietti  10:30-11:15
Working Group 3
final summaries
11:00-11:30 Ben-Zvi Rosenzweig Bane K.J. Kim 11:15-12:00
Working Group 4
final summaries
11:30-12:00 Limborg Anderson Alesini Stupakov

12:00-12:30
Closing

12:00-12:30 Ryne Zolotorev Brau Jaroszynski
12:30-13:45
Lunch
13:45-15:30
Working Groups
Social program
Working Groups
 
15:30-15:45
Coffee
Coffee
15:45-16:30
Working Groups
Working Groups
Working groups
16:30-17:00 Van der Geer
17:00-17:30 Roux

 

Invited Speakers

  • K.J. Kim (Univ. Chicago), A Compact Smith-Purcell BWO for Intense Terahertz Radiation
  • M. Hogan (SLAC), Electron Beam-Based Wakefield Acceleration,
  • O.J. Luiten (Eindhoven), Ultra-cold electron source, YES, abs
  • D. Jaroszynski(Imperial College), Production of High Quality Electron Beams from Laser Plasma Interaction
  • G. Travish (UCLA/LLNL), Underdense Plasma Lens Focusing
  • Timur Shaftan (BNL), High-brightness electron beams with tunable modulation
  • M. Uesaka (Tokyo), High Brightness Beam Applications: Inverse Compton Scattering
  • Luca Giannessi (ENEA) Ultra-short Pulses from Super-radiant Seeded FEL
  • L. Schachter, Technion), Laser Acceleration in Structures
  • J. Rosenzweig (UCLA), Ultra-intense Beam Effects in Plasma Wakefields: Applications to HEP
  • R. Ryne (LBNL), Computational Challenges in High Brightness Beam Physics
  • S. Reiche (UCLA), High Brightness Beam Applications: FEL
  • G. Krafft (JLAB), High Brightness Beam Applications: ERL
  • D. Alesini (U. Roma), RF deflector-based sub-ps beam diagnostics: application to FELs and advanced accelerators
  • I. Ben-Zvi (BNL), Secondary Emission Photo-cathodes
  • 15. C. Brau (Vanderbilt), Needle Cathodes
  • J. Sekutovicz (DESY), Superconducting RF Photoinjectors
  • S. Anderson (LLNL), Simultaneous production of fs beam pulses and micron beam spots
  • R. A. Kishek (Maryland), Scaled Electron Models: Space-Charge-Dominated Electron Storage Rings
  • D. Giulietti (Pisa), High brightness laser induced multi-MeV electron/proton sources
  • R. Bonifacio (Milano): Quantum SASE FEL theory
  • D. Jaroszynski (Univ. of Strathclyde), The TOPS Project
  • G. Stupakov (SLAC), Review of FEL beam conditioning schemes
  • K. Bane (SLAC) Wakefields of sub-picosecond electron bunches
  • F. Stephan (DESY-Zeuthen), Status and Perspectives of Photo Injector Developments for High Brightness Beams
  • C. Limborg (SLAC), Laser shaping in photoinjectors for high brightness beams
  • R. Roux (Orsay), Orsay work on CLIC photoinjector
  • B. van der Geer (Eindhoven), Conceptual design of a 1 kA, 100 fs, 1 micron split rf-photoinjector
  • M. Zolotorev (LBNL), An Ultra-Bright Pulsed Electron Beam with Low Longitudinal Emittance

 


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