By Andreas Wolf, Gerald Gwinner (auth.), Helge Knudsen, Jens Ulrik Andersen, Heinz-Jürgen Kluge (eds.)
This quantity includes the complaints of the 3rd Euroconference on Atomic Phys ics at Accelerators (APAC 2001), with the name kept debris and basic Physics. It was once held in Aarhus, Denmark, from September eight to thirteen on the Marselis inn situated close to the seashore and the Marselis Woods outdoor Aarhus, yet a few of the actions happened on the division of Physics, college of Aarhus. The convention was once backed via the fee of the eu Union (Contract No. ERBFMMACT980469) and in addition by way of the Danish learn starting place via ACAP (Aarhus heart for Atomic Physics). The assembly was once keen on the appliance of garage earrings for atomic physics, and there are rather small jewelry in Aarhus, ASTRID (Aarhus garage Ring for Ions,Denmark) and ELISA (ELectrostatic Ion garage ring, Aarhus). The learn at those jewelry has contributed to the powerful place of eu technology during this box. either earrings are designed in accordance with special innovations. ASTRID is a twin objective ring, which part the time shops electrons for the new release of low-energy synchrotron radiation. The garage of destructive debris has additionally been a distinct characteristic for the applying of ASTRID as an ion garage ring.
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Extra resources for Atomic Physics at Accelerators: Stored Particles and Fundamental Physics: Proceedings of the APAC 2001, held in Aarhus, Denmark, 8–13 September 2001
So far, mainly bare high-Z ions were used in the experiments. , H-, He-, and Lilike uranium projectiles . This enables us to investigate for the REC process the role of additional electrons present in the projectile prior to the collision. 30 G. BEDNARZ ET AL. 2. Experimental method The experiment was performed at the experimental storage ring (ESR) at GSIDarmstadt by using H-, He-, and Li-like uranium ions at an energy of 216 MeV/u . For the experiment, the X-ray spectroscopy environment of the internal jet-target was used.
A 48 (199 3), 3644 . Inal, M. K. , J. Phys. B 20 (1987) , 4221. Hyperfine Interactions 146/147: 41-45,2003. © 2003 Kluwer Academic Publishers . 41 Dielectronic Recombination of Very Heavy Lithiumlike Ions C. BRANDAU' , T. , S. BOHM 1, C. , A. HOFFKNECHT 1, S. KIESLICH 1 , H. , S. SCHIPPERS I , W. SHI 1 , A. MOLLER 1, N. GRON 2 , W. SCHEID 2 , T. STEIH2 , F. BOSCH3 , B. FRANZKE3 , C. KOZHUHAROV 3 , A. KRAMER 3 , P. H. MOKLER 3 , F. NOLDEN3 , M. STECK3 , T. STOHLKER3 and Z. STACHURA4 I Institut fur Kernphysik, Universitdt Giessen, Germany 2Institutfur Theoretische Physik, Universitiit Giessen, Germany 3Gesellschaft fur Schwerionenforschung (GSI), Darmstadt, Germany 4Institute for Nuclear Physics.
STACHVRA 4 'Institute ofPhysics, Jagiellonian University, Cracow, Poland 2Gesellschaft fur Schwerionenforschung, Darmstadt, Germany 3Institute ofModern Physics, Lanzhou, China 4Institute for Nuclear Physics, Cracow, Poland Abstract. , the radiative electron capture (REC) , in relativistic atomic collisions involving high-Z projectiles . Whereas former investigations focused on initial1y bare projectil es, we here extend our studies to heavy few-electron ions (H-, He- and Li-like uranium) in order to elucidate the importance of electron-electron interaction for photoionization in the realm of high-Z ions.
Atomic Physics at Accelerators: Stored Particles and Fundamental Physics: Proceedings of the APAC 2001, held in Aarhus, Denmark, 8–13 September 2001 by Andreas Wolf, Gerald Gwinner (auth.), Helge Knudsen, Jens Ulrik Andersen, Heinz-Jürgen Kluge (eds.)