Gas–solid effect in mean charge and slowing down of uranium ions at 60.2 and 200MeV/u

Charge-state distributions and energy-loss measurements of uranium ions in gases and solids at incident energies of 60.2 and 200MeV/u were performed with the magnetic spectrometer FRS at GSI Darmstadt. The charge distribution was investigated in various gases and solids. We observed a gas–solid effe...

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Published in:Nuclear instruments & methods in physics research. Section B, Beam interactions with materials and atoms Vol. 245; no. 1; pp. 32 - 35
Main Authors: Fettouhi, A., Weick, H., Portillo, M., Becker, F., Boutin, D., Geissel, H., Knöbel, R.K., Kurcewicz, J., Kurcewicz, W., Kurpeta, J., Litvinov, Yu, Livesay, R.J., Morrissey, D.J., Münzenberg, G., Nolen, J.A., Ogawa, H., Sakamoto, N., Scheidenberger, C., Stadlmann, J., Winkler, M., Yao, N.
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Language:English
Published: Elsevier B.V 01-04-2006
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Abstract Charge-state distributions and energy-loss measurements of uranium ions in gases and solids at incident energies of 60.2 and 200MeV/u were performed with the magnetic spectrometer FRS at GSI Darmstadt. The charge distribution was investigated in various gases and solids. We observed a gas–solid effect in ionization and mean charge. This effect arises from the shorter collision time in solids comparable with the lifetimes of the excited states of the projectile. Simultaneously, the stopping force was measured for the same targets.
AbstractList Charge-state distributions and energy-loss measurements of uranium ions in gases and solids at incident energies of 60.2 and 200MeV/u were performed with the magnetic spectrometer FRS at GSI Darmstadt. The charge distribution was investigated in various gases and solids. We observed a gas–solid effect in ionization and mean charge. This effect arises from the shorter collision time in solids comparable with the lifetimes of the excited states of the projectile. Simultaneously, the stopping force was measured for the same targets.
Author Portillo, M.
Geissel, H.
Fettouhi, A.
Knöbel, R.K.
Ogawa, H.
Sakamoto, N.
Kurpeta, J.
Münzenberg, G.
Becker, F.
Boutin, D.
Kurcewicz, J.
Winkler, M.
Stadlmann, J.
Weick, H.
Livesay, R.J.
Kurcewicz, W.
Litvinov, Yu
Morrissey, D.J.
Yao, N.
Nolen, J.A.
Scheidenberger, C.
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  organization: Institute of Experimental Physics, Warsaw University, Warsaw, Poland
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  organization: Colorado School of Mines, Golden, CO, USA
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  organization: National Superconducting Cyclotron Laboratory, Michigan State University, East Lansing, MI, USA
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  organization: Argonne National Laboratory, Argonne, IL, USA
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  surname: Ogawa
  fullname: Ogawa, H.
  organization: Department of Physics, Nara Women’s University, Nara, Japan
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  surname: Sakamoto
  fullname: Sakamoto, N.
  organization: Department of Physics, Nara Women’s University, Nara, Japan
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  fullname: Yao, N.
  organization: Gesellschaft für Schwerionenforschung, Darmstadt, Germany
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Keywords 79.20.Rf
Stopping force
Stopping power
Gas–solid
Heavy ions
Charge states
34.50.Bw
82.30.Fi
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Snippet Charge-state distributions and energy-loss measurements of uranium ions in gases and solids at incident energies of 60.2 and 200MeV/u were performed with the...
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SubjectTerms Charge states
Gas–solid
Heavy ions
Stopping force
Stopping power
Title Gas–solid effect in mean charge and slowing down of uranium ions at 60.2 and 200MeV/u
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