Isomeric Ratios in 206Hg

T. Alexander, Zs. Podolyak, M. L. Cortes, J. Gerl, Dirk Rudolph, Luis Sarmiento, F. Ameil, T. Arici, D. Bazzacco, Ch Bauer, M. A. Bentley, A. Blazhev, M. Bowry, P. Boutachkov, R. Carroll, Claes Fahlander, A. Gadea, Jnaneswari Gellanki, W. Gelletly, A. GivechevN. Goel, Pavel Golubev, M. Gorska, A. Gottardo, E. Gregor, G. Guastalla, T. Habermann, M. Hackstein, A. Jungclaus, I. Kojouharov, W. Korten, S. Kumar, N. Kurz, Natasa Lalovic, M. Lettmann, C. Lizarazo, C. Louchart, S. Mandal, E. Merchan, C. Michelagnoli, Th Moeller, K. Moschner, Z. Patel, N. Pietralla, S. Pietri, D. Ralet, M. Reese, P. H. Regan, P. Reiter, H. Schaffner, P. Singh, C. Stahl, R. Stegmann, O. Stezowksi, J. Taprogge, P. Thoele, P. M. Walker, O. Wieland, A. Wendt, E. Wilson, R. Wood, H. -J. Wollersheim

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    Sammanfattning

    Hg-206 was populated in the fragmentation of an E/A = 1 GeV Pb-208 beam at GSI. It was part of a campaign to study nuclei around Pb-208 via relativistic Coulomb excitation. The observation of the known isomeric states confirmed the identification of the fragmentation products. The isomeric decays were also used to prove that the correlations between beam identification detectors and the AGATA gamma-ray tracking array worked properly and that the tracking efficiency was independent of the time relative to the prompt flash.

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