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@inproceedings{karamysheva:cyclotrons2022-thpo012, author = {G.A. Karamysheva and K. Bunyatov and V.A. Gerasimov and S. Gurskiy and G.G. Hodshibagijan and O. Karamyshev and I.D. Lyapin and V. Malinin and D. Nikiforov and M.S. Novikov and D. Popov and V.M. Romanov and G. Shirkov and S.G. Shirkov and A.A. Sinitsa and G.V. Trubnikov and S. Yakovenko}, % author = {G.A. Karamysheva and K. Bunyatov and V.A. Gerasimov and S. Gurskiy and G.G. Hodshibagijan and O. Karamyshev and others}, % author = {G.A. Karamysheva and others}, title = {{Progress in Design of MSC230 Superconducting Cyclotron for Proton Therapy}}, % booktitle = {Proc. CYCLOTRONS'22}, booktitle = {Proc. 23rd Int. Conf. Cyclotrons Appl. (CYCLOTRONS'22)}, pages = {327--329}, paper = {THPO012}, language = {english}, keywords = {cyclotron, proton, extraction, cavity, radiation}, venue = {Beijing, China}, series = {International Conference on Cyclotrons and their Applications}, number = {23}, publisher = {JACoW Publishing, Geneva, Switzerland}, month = {10}, year = {2023}, issn = {2673-5482}, isbn = {978-3-95450-212-7}, doi = {10.18429/JACoW-CYCLOTRONS2022-THPO012}, url = {https://jacow.org/cyclotrons2022/papers/thpo012.pdf}, abstract = {{The current status of the MSC230 superconducting cyclotron designed for biomedical research is presented. MSC230 is an isochronous four-sector compact cyclotron with a magnetic field in the center of 1.7 T. Acceleration is performed at the fourth harmonic mode of the accelerating radio-frequency (RF) system consisting of four cavities located in the cyclotron valleys. The accelerator will use an internal Penning type source with a hot cathode. Particular attention is paid to extraction, as it must have a high extraction efficiency.}}, }