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WG3

Place

Location: IHEP
Room: A214
Date: from 20 Aug 10:30 to 23 Aug 17:30

Conveners

  • 20 Aug 10:30 - 12:30 PM Proton Beams
    • Dr. Bogacz, Alex (Jefferson Lab)
  • 20 Aug 13:30 - 3:30 PM Proton Beams and Targetry
    • Dr. popovic, milorad (Fermilab)
  • 20 Aug 16:00 - 5:30 PM Neutrino Factory
    • Prof. Palladino, Vittorio (Univ & INFN Napoli, Italy)
  • 21 Aug 13:30 - 3:30 PM nuSTORM
    • Prof. Fu, Shinian (IHEP)
  • 21 Aug 16:00 - 5:30 PM Proton Beams II
    • Dr. Zisman, Michael (Lawrence Berkeley National Laboratory)
  • 23 Aug 13:30 - 3:30 PM Summary I
    • Dr. Pasternak, Jaroslaw (Imperial College London/RAL-STFC)
  • 23 Aug 16:00 - 5:30 PM Summary II
    • Dr. Pasternak, Jaroslaw (Imperial College London/RAL-STFC)

Timetable | Contribution List

Displaying 23 contributions out of 23
Session: WG3
Presented by David NEUFFER on 20/8/2013 at 9:00
Session: WG3
Presented by Dr. Zhihui LI on 21/8/2013 at 8:30
Session: WG3
Presented by Prof. Yoshiharu MORI
Session: WG3
Presented by Mr. Philippe VELTEN on 20/8/2013 at 3:30
Session: WG3
on 21/8/2013 at 15:00
Session: WG3
on 21/8/2013 at 9:00
Session: WG3
on 20/8/2013 at 4:00
Session: WG3
Presented by Dr. Marcos DRACOS on 20/8/2013 at 2:30
Session: WG3
Track: Accelerator Physics
The Neutrino Factory 4MW target system is optimized to increase the captured muon count that fits within the acceptance of the subsequent acceleration section. A proposed staged Neutrino Factory, producing lower muon intensities of 10^20 muons per year assumes a 1 MW target station. The proton driver of the scaled down target station has a lower intensity and lower energy (3 GeV) which could be u ... More
Presented by Dr. Hisham SAYED
Session: WG3
Track: Accelerator Physics
The Neutrino Factory 4MW target system is optimized to increase the captured muon count that fits within the acceptance of the subsequent acceleration section. A proposed staged Neutrino Factory, producing lower muon intensities of 10^20 muons per year assumes a 1 MW target station. The proton driver of the scaled down target station has a lower intensity and lower energy (3 GeV) which could be u ... More
Presented by Dr. Hisham SAYED on 20/8/2013 at 7:00
Session: WG3
Presented by Ms. Yang WU on 21/8/2013 at 8:00
Session: WG3
Presented by Dr. Jean-Baptiste LAGRANGE on 21/8/2013 at 6:00
Session: WG3
Presented by Dr. Alex BOGACZ on 20/8/2013 at 8:00
Session: WG3
Presented by Dr. Jianjun YANG on 20/8/2013 at 6:00
Session: WG3
Presented by Dr. Nikolaos VASSILOPOULOS on 20/8/2013 at 3:00
Session: WG3
Presented by Prof. Kirk T MCDONALD on 20/8/2013 at 6:30
Session: WG3
Presented by David NEUFFER on 21/8/2013 at 5:30
Session: WG3
Presented by Dr. Tetsuro SEKIGUCHI on 20/8/2013 at 5:30
Session: WG3
Track: Accelerator Physics
Vacuum rf 6D cooling lattices will be reviewed, including FOFO, RFOFOs (Ring, Guggenheim and Balbekov), Helical Snake, and Planar Snake. Advantages and disadvantages of each will be discussed.
Session: WG3
on 23/8/2013 at 5:30
Session: WG3
Track: Accelerator Physics
The Fermilab Engineering Services Section (FESS) has produced a Project Definition Report that details how nuSTORM could be constructed at Fermilab. This talk will describe the conclusions of the report and will cover the proton beam line, target station, pion transport line, decay ring, near detector hall and far detector hall.
Presented by Dr. Alan BROSS
Session: WG3
Presented by Prof. Alan BROSS, Dr. David ADEY on 21/8/2013 at 6:30
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