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A study of high spin states in the transitional nucleus90Mo
Authors:M K Kabadiyski  F Cristancho  C J Gross  A Jungclaus  K P Lieb  D Rudolph  H Grawe  J Heese  K -H Maier  J Eberth  S Skoda  W -T Chou  E K Warburton
Institution:1. II. Physikalisches Institut, Universit?t G?ttingen, Bunsenstrasse 7-9, W-3400, G?ttingen, Germany
3. Hahn-Meitner-Institut GmbH, Glienicker Strasse 100, W-1000, Berlin 39, Germany
4. Institut für Kernphysik der Universit?t zu K?ln, Zülpicher Strasse 77, W-5000, K?ln 41, Germany
5. Brookhaven National Laboratory, 11973, Upton, NY, USA
Abstract:The reaction58Ni(36Ar, 4p)90Mo has been studied at a beam energy of 149 MeV. A detector array consisting of the OSIRIS spectrometer (12 Compton-suppressed Ge detectors), four charged-particleδE detectors and seven NE-213 neutron detectors at the VICKSI accelerator in Berlin has been used to measure the gamma radiation inγγ- and particle-γγ-coincidence mode. An additional Ge detector was placed at 162? to the beam direction to provide information on DCO ratios. The level scheme of90Mo has been extended up to an excitation energy of about 12 MeV and probable spin 23?. Some 70 transitions and 40 levels have been newly identified. Spin assignments have been proposed on the basis of measured DCO ratios. Shell model calculations in a model space consisting of the proton 1f 5/2, 2p 3/2, 2p 1/2, and 1g 9/2 orbits and the neutron 2p 1/2, 1g 9/2, 1g 7/2, 2d 5/2, 2d 3/2, and 3s 1/2 orbits with some truncation were made for states above 9? and the predicted structure of these states is discussed.
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