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@inproceedings{ranjbar:ipac2021-wexa04, author = {V.H. Ranjbar and M. Blaskiewicz and Z.A. Conway and D.M. Gassner and J.M. Grames and J. Guo and C. Hetzel and B. Lepore and F. Lin and H. Lovelace III and I. Marneris and C. Montag and V.S. Morozov and F. Méot and D. Sagan and T. Satogata and J. Skaritka and N. Tsoupas and E. Wang and F.J. Willeke}, % author = {V.H. Ranjbar and M. Blaskiewicz and Z.A. Conway and D.M. Gassner and J.M. Grames and J. Guo and others}, % author = {V.H. Ranjbar and others}, title = {{The RCS Design Status for the Electron Ion Collider}}, booktitle = {Proc. IPAC'21}, pages = {2521--2523}, eid = {WEXA04}, language = {english}, keywords = {resonance, electron, injection, lattice, emittance}, 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-WEXA04}, url = {https://jacow.org/ipac2021/papers/wexa04.pdf}, note = {https://doi.org/10.18429/JACoW-IPAC2021-WEXA04}, abstract = {{The design of the Electron-Ion Collider Rapid Cycling Synchrotron (RCS) to be constructed at Brookhaven National Laboratory is advancing to meet the injection requirements for the Electron Storage Ring (ESR). Over the past year activities are focused on developing the approach to inject two 28 nC bunches every second, up from the original design of one 10nC bunch every second. The solution requires several key changes concerning the injection and extraction kickers, charge accumulation via bunch merging and a carefully calibrated RF acceleration profile to match the longitudinal emittance required by the ESR.}}, }