1. IceCube Institutional Memorandum Of Understanding (MOU)
  1. Universität Wuppertal
    1. Klaus Helbing
    2. Scope of Work
    3. Faculty:
    4. Scientists and Post Docs:
    5. Ph.D. Students:
    6. Diploma/Master Students:
    7. Wuppertal Computing resources

Last updated on: September 19, 2016



IceCube Institutional Memorandum Of Understanding (MOU)

 

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Universität Wuppertal


Klaus Helbing

Ph.D Scientists (Faculty Scientist/Post Doc Grads) : 2 (1 1 5)


Scope of Work

  

Labor Cat.
Names
WBS L3
Tasks
WBS 2.1
WBS 2.2
WBS 2.3
WBS 2.4
WBS 2.5
WBS 2.6
Grand Total
       
Program Coordination
Detector Maintenance & Operations
Computing & Data Management
Data Processing & Simulation
Software
Calibration
 
KE HELBING, KLAUS Online Filter (Pnf) BSM WG chair  
0.25
       
0.25
  HELBING, KLAUS Total     
0.25
       
0.25
PO POLLMANN, ANNA Online Filter (Pnf) SLOP filter, Monopole filter
 
 
0.25
       
0.25
  POLLMANN, ANNA Total     
 0.25
       
0.25
GR WUPPERTAL GR Detector Monitoring Monitoring shifts  
0.03
       
0.03
  BINDIG, DANIEL Surface Detector Operations Laterally separated muons in IceTop  
0.20
       
0.20
  KOPPER, SANDRO Reconstruction Direct SUSY detection through double tracks        
0.20
 
0.20
  SOLDIN, DENNIS Reconstruction High transverse momentum muons InIce        
0.20
 
0.20
  HOFFMANN, RUTH Ice Properties Acoustic and radio ice properties          
0.20
0.20
  LAUBER, FREDERIK Online Filter (Pnf) Detection of Magnetic Monopoles through radio luminescence.  
0.20
       
0.20
WUPPERTAL GR Total     
0.43
   
0.40
0.20
1.03
WUPPERTAL Total      
0.93
   
0.40
0.20
1.53
 



Faculty:

K. Helbing (L) – BSM WG chair, Outreach.



Scientists and Post Docs:

Anna Pollmann – SLOP filter, Monopole filter



Ph.D. Students:

Daniel Bindig – laterally separated muons in IceTop;

Sandro Kopper – direct SUSY detection through double tracks;

Dennis Soldin – high transverse momentum muons InIce;

Ruth Hoffmann – Acoustic and radio ice properties;

Frederik Lauber – Detection of Magnetic Monopoles through radio luminescence.



Diploma/Master Students:

Sarah Pieper - Efficiency of light production through luminescence in ice



Wuppertal Computing resources
For centralized production: on average 300 CPUs.
For local production and development: 200 CPUs and 64 GPU cards.

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Wuppertal_MoU_SOW_2016.0919.docx