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CD: A double sided silicon strip detector for radioactive nuclear beam experiments
Authors:A N Ostrowski  S Cherubini  T Davinson  D Groombridge  A M Laird  A Musumarra  A Ninane  A di Pietro  A C Shotter  P J Woods
Affiliation:

a Department of Physics and Astronomy, The University of Edinburgh, The King's Buildings, Mayfield Road, Edinburgh, Scotland EH9 3JZ, UK

b Institut de Physique Nucléaire, Université Catholique de Louvain, Louvain-la-Neuve, Belgium

Abstract:A very compact double sided silicon strip detector array is described, designed for use in reaction studies involving radioactive nuclear beams. It is small enough to fit inside a large solid angle γ-detector array and will enable Doppler-shift corrections at energies in the vicinity of the Coulomb barrier. The detector provides sufficient energy and time-of-flight resolution for the identification of light reaction products and can be set up to cover a substantial part of the scattering angular distribution with good resolution.

The device is available in thicknesses of up to 500 μm to stop all interesting reaction products. Moreover, a very thin (35–40 μm) variant of this detector is described that can be used as an energy loss detector in a ΔEE telescope geometry followed by a detector that measures the residual energy. This provides additional particle identification capabilities, e.g. in light exotic nuclei induced reactions. First results from a commissioning run using a post-accelerated radioactive beam are presented.

Keywords:Solid state strip detectors  Charged particle spectroscopy  Direct reactions with radioactive nuclear beams
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