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Last updated: February 14, 2014
IceCube Institutional Memorandum Of Understanding (MOU)
Scope Of Work
Niels Bohr Institute – Københavns Universitet
D. Jason Koskinen Ph.D Scientists (Faculty Scientist/Post Doc Grads) : 1 (1 0 3) |
Labor Cat. | Names | WBS L3 | Tasks | WBS 2.1
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WBS 2.2
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WBS 2.3
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WBS 2.4
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WBS 2.5
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Grand Total |
Program Management
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Detector Maintenance & Operations
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Computing & Data Management
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Triggering & Filtering
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Data Quality, Reconstruction & Simulation Tools
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KE
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KOSKINEN, D. JASON | Reconstruction/ Analysis tools | DeepCore Veto | 0.10
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0.10
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Simulation Production | Low-energy/PINGU Simulation | 0.10
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0.10
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Physics Filters | Low-energy WG Co-Chair | 0.25
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0.25
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KOSKINEN, D. JASON Total | 0.10
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0.25
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0.10
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0.45
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GR
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LARSON, MICHAEL | Simulation Production | Correlated Noise simulation | 0.20
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0.20
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Detector Monitoring | Monitoring Shifts | 0.03
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0.03
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Larson, Michael Total | 0.03
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0.20
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0.23
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MEDICI, MORTEN | Simulation Production | Absolute energy calibration of low-energy interactions | 0.20
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0.20
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Detector Monitoring | Monitoring Shifts | 0.03
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0.03
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Medici, Morten Total | 0.03
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0.20
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0.23
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SANDROOS, JOAKIM | Reconstruction/ Analysis tools | Particle identification in PINGU | 0.40
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Sandroos, Joakim Total | 0.40
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0.40
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NBI Total | 0.06
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0.10
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0.25
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0.90
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1.31
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Faculty:
D. Jason Koskinen : Co-Convenor of low-en WG, PINGU and low-energy simulation, simulation coordination representative for low-en WG, tau neutrino appearance, 100% IceCube
[Subir Sarkar, representing Oxford U. on ICB, is also Niels Bohr Professor, spending 50% time at NBI, 2013-18]
Scientists and Post Docs:
N.A.
Ph.D. Students:
Joakim Sandroos: Low-energy particle identification techniques, 100% IceCube. Mr. Sandroos is applying for grad school options and is only expected to spend ~40% of 1-year working on IceCube, hence the 0.4 FTE
Thesis/Analysis topics: None
Michael Larson: Maintainer and developer of the Vuvuzela noise model, PINGU CORSIKA simulation, 100% IceCube
Thesis/Analysis topics: Tau neutrino appearance in DeepCore
Morten Medici: In addition to University course work, Mr. Medici is looking at the charge characteristics of IceCube noise, and will start analyzing DeepCore with an eye towards dark matter searches.
Thesis/Analysis topics: Dark matter search in DeepCore
Diploma/Master Students: N/A
Description of Service work
With access to the local Tier 3 cluster, we will focus on generation of low-energy signal MC that uses the GENIE neutrino-generator and direct photon propagation using GPUs. In addition, we are exploring PINGU CORSIKA generation. PI Koskinen will continue as co-convenor of the low-en working group. NBI is responsible for refining and maintaining the correlated noise simulation, which is a major factor in improving sensitivity to the lowest energy regions.
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