Polarized beams at HIE-ISOLDE – from dreams to reality. G. Georgiev 1, M. Hass 2, A. Herlert 3, D.L. Balabanski 4, L. Hemmingsen 5, K. Johnston 3, M. Lindroos.

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Polarized beams at HIE-ISOLDE – from dreams to reality. G. Georgiev 1, M. Hass 2, A. Herlert 3, D.L. Balabanski 4, L. Hemmingsen 5, K. Johnston 3, M. Lindroos 3, K. Riisager 6, J. Van de Walle 3, D. Voulot 3, F. Wenander 3, W.-D. Zeitz 7 1. CSNSM, Orsay, France; 2. The Weizmann Institute, Rehovot, Israel; 3. ISOLDE, CERN, Geneva, Switzerland; 4. INRNE, BAS, Sofia, Bulgaria; 5. IGM, LIFE, University of Copenhagen, Denmark; 6. Department of Physics and Astronomy, University of Aarhus, Denmark; 7. Helmholtz-Zentrum Berlin für Materialien und Energie GmbH, Germany Polarized beams – WHY? Precise test of the nuclear models for exotic nuclei: transfer reactions (analyzing power) Coulomb excitation – spin/parity; multiplicity assignments etc. nuclear moments – proton/neutron character, angular momentum j

Can one do it and how? M. Hass et al., NPA 414, 316 (84) Tilted Foils - the principles: atomic polarization  nuclear polarization higher nuclear spins  higher polarization (>10% achieved so far) strong velocity dependence (poorly studied up to now) Can one post-accelerate the ions after polarizing them? done for stable beams - noble-gas like charge states + LINAC  J. Bendahan et al., ZPA 331, 343 (88)

- unique opportunity What do we need to achieve it? 3 MeV/u and 0.3 MeV/u  -NMR setup from HMI Berlin transferred to ISOLDE gain of complete control on the TF polarization nuclear structure (moments, reactions …), nuclear methods in the solid-state physics, biophysics etc. …