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Ion counting efficiencies at the IGISOL facility

Al-Adili, Ali (author)
Uppsala universitet,Tillämpad kärnfysik
Jansson, Kaj (author)
Uppsala universitet,Tillämpad kärnfysik
Lantz, Mattias (author)
Uppsala universitet,Tillämpad kärnfysik
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Solders, Andreas, 1976- (author)
Uppsala universitet,Tillämpad kärnfysik,Nuclear reactions
Gustavsson, Cecilia (author)
Uppsala universitet,Tillämpad kärnfysik
Mattera, Andrea (author)
Uppsala universitet,Tillämpad kärnfysik
Prokofiev, Alexander (author)
Uppsala universitet,Tillämpad kärnfysik
Rakopoulos, Vasileios (author)
Uppsala universitet,Tillämpad kärnfysik
Tarrío, Diego (author)
Uppsala universitet,Tillämpad kärnfysik
Wiberg, Sara (author)
Uppsala universitet,Tillämpad kärnfysik
Österlund, Michael (author)
Uppsala universitet,Tillämpad kärnfysik
Pomp, Stephan (author)
Uppsala universitet,Tillämpad kärnfysik
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 (creator_code:org_t)
2014
English 52 s.
  • Reports (other academic/artistic)
Abstract Subject headings
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  • At the IGISOL-JYFLTRAP facility, fission mass yields can be studied at high precision. Fission fragments from a U target are passing through a Ni foil and entering a gas filled chamber. The collected fragments are guided through a mass separator to a Penning trap where their masses are identified. This simulation work focuses on how different fission fragment properties (mass, charge and energy) affect the stopping efficiency in the gas cell. In addition, different experimental parameters are varied (e. g. U and Ni thickness and He gas pressure) to study their impact on the stopping efficiency. The simulations were performed using the Geant4 package and the SRIM code. The main results suggest a small variation in the stopping efficiency as a function of mass, charge and kinetic energy. It is predicted that heavy fragments are stopped about 9% less efficiently than the light fragments. However it was found that the properties of the U, Ni and the He gas influences this behavior. Hence it could be possible to optimize the efficiency.

Keyword

Fission
IGISOL
ion guide
fission fragments
stopping efficiency
Fysik med inriktning mot tillämpad kärnfysik
Physics with specialization in Applied Nuclear Physics

Publication and Content Type

vet (subject category)
rap (subject category)

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