Abstract
This paper outlines some of the physics opportunities available with the GSI RISING active stopper and presents preliminary results from an experiment aimed at performing beta-delayed gamma-ray spectroscopic studies in heavy-neutron-rich nuclei produced following the projectile fragmentation of a 1 GeV per nucleon 208Pb primary beam. The energy response of the silicon active stopping detector for both heavy secondary fragments and beta-particles is demonstrated and preliminary results on the decays of neutron-rich Tantalum (Ta) to Tungsten (W) isotopes are presented as examples of the potential of this technique to allow new structural studies in hitherto experimentally unreachable heavy, neutron-rich nuclei. The resulting spectral information inferred from excited states in the tungsten daughter nuclei are compared with results from axially symmetric HartreeFock calculations of the nuclear shape and suggest a change in ground state structure for the N = 116 isotone 190W compared to the lighter isotopes of this element. © 2008 World Scientific Publishing Company.
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CITATION STYLE
Regan, P. H., Alkhomashi, N., Al-Dahan, N., PodolyÁk, Z., Pietri, S. B., Steer, S. J., … Valiente-DobÓn, J. J. (2008). First results with the rising active stopper. In International Journal of Modern Physics E (Vol. 17, pp. 8–20). World Scientific Publishing Co. Pte Ltd. https://doi.org/10.1142/S0218301308011719
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