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@inproceedings{spiller:ipac2021-mopab175, author = {P.J. Spiller and O. Boine-Frankenheim and L.H.J. Bozyk and S. Klammes and H. Kollmus and D. Ondreka and I. Pongrac and N. Pyka and C. Roux and K. Sugita and St. Wilfert and T. Winkler and D.F.A. Winters}, % author = {P.J. Spiller and O. Boine-Frankenheim and L.H.J. Bozyk and S. Klammes and H. Kollmus and D. Ondreka and others}, % author = {P.J. Spiller and others}, title = {{Advanced Concepts and Technologies for Heavy Ion Synchrotrons}}, booktitle = {Proc. IPAC'21}, pages = {594--597}, eid = {MOPAB175}, language = {english}, keywords = {laser, synchrotron, heavy-ion, electron, space-charge}, venue = {Campinas, SP, Brazil}, series = {International Particle Accelerator Conference}, number = {12}, publisher = {JACoW Publishing, Geneva, Switzerland}, month = {08}, year = {2021}, issn = {2673-5490}, isbn = {978-3-95450-214-1}, doi = {10.18429/JACoW-IPAC2021-MOPAB175}, url = {https://jacow.org/ipac2021/papers/mopab175.pdf}, note = {https://doi.org/10.18429/JACoW-IPAC2021-MOPAB175}, abstract = {{New concepts and technologies are developed to advance the performance of heavy ion synchrotrons. Besides fast ramping of superconducting magnets, extreme UHV technologies to stabilize dynamic vacuum and charge related loss, broad band MA cavities, space charge compensation by means of electron lenses and new cooling technologies, e.g. laser cooling, show great promise to advance the forefront of beam parameters. Several of these technologies and concepts are developed and tested at GSI/FAIR. Progress and plans will be reported.}}, }