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[n] M. Nabinger et al., “Characterization and optimization of laser-generated THz beam for THz based streaking”, in Proc. IPAC'23, Venice, Italy, May 2023, pp. 4149-4152. doi:10.18429/JACoW-IPAC2023-THPA079
[n] A. Z. Babaian et al., “Septum Magnet for Electron Slow Extraction from the Yerevan Synchrotron”, in Proc. PAC'91, San Francisco, CA, USA, May 1991, pp. 2146-2149.
[n] G. Rommel, “The GANIL Vacuum System-Results”, in Proc. PAC'83, Santa Fe, NM, USA, Mar. 1983, pp. 2914-2915.
[n] A. M. Koshkarev, A. S. Kuznetsov, A. L. Sanin, V. Ya. Savkin, S. Yu. Taskaev, and P. V. Zubarev, “Development and Implementation of the Automation System of the Ion Source for BNCT”, in Proc. RuPAC'16, Saint Petersburg, Russia, Nov. 2016, pp. 733-735. doi:10.18429/JACoW-RUPAC2016-THPSC086
[n] S. M. Liuzzo et al., “The ESRF-EBS Simulator: A Commissioning Booster”, in Proc. ICALEPCS'21, Shanghai, China, Oct. 2021, pp. 132-137. doi:10.18429/JACoW-ICALEPCS2021-MOPV012
[n] J. Rymer, G. A. Engeman, R. W. Hamm, and J. M. Potter, “A Compact RF Driven H- ion Source for Linac Injection”, in Proc. PAC'91, San Francisco, CA, USA, May 1991, pp. 1910-1913.
[n] T. J. Bian, S. An, F. P. Guan, L. Y. Ji, and S. M. Wei, “Feasibility Study on 10 MW-Class Ultra-High Power Cyclotron”, in Proc. Cyclotrons'22, Beijing, China, Dec. 2022, paper FRAO02, pp. 359-363. doi:10.18429/JACoW-CYCLOTRONS2022-FRAO02
[n] W. Vinzenz, G. Hutter, G. Kube, W. Hartmann, W. Gutowski, and M. Pilz, “The RF-System of the new GSI High Current Linac HSI”, in Proc. LINAC'00, Monterey, CA, USA, Aug. 2000, paper THE05, pp. 977-979.
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References
- M. Nabinger et al., “Characterization and optimization of laser-generated THz beam for THz based streaking”, in Proc. 14th Int. Particle Accelerator Conf. (IPAC'23), Venice, Italy, May 2023, paper THPA079, pp. 4149-4152.
- A. Z. Babaian et al., “Septum Magnet for Electron Slow Extraction from the Yerevan Synchrotron”, in Proc. 14th Particle Accelerator Conf. (PAC'91), San Francisco, CA, USA, May 1991, pp. 2146-2149.
- G. Rommel, “The GANIL Vacuum System-Results”, in Proc. 10th Particle Accelerator Conf. (PAC'83), Santa Fe, NM, USA, Mar. 1983, pp. 2914-2915.
- A. M. Koshkarev, A. S. Kuznetsov, A. L. Sanin, V. Ya. Savkin, S. Yu. Taskaev, and P. V. Zubarev, “Development and Implementation of the Automation System of the Ion Source for BNCT”, in Proc. 25th Russian Particle Accelerator Conf. (RuPAC'16), Saint Petersburg, Russia, Nov. 2016, pp. 733-735.
- S. M. Liuzzo et al., “The ESRF-EBS Simulator: A Commissioning Booster”, in Proc. 18th Int. Conf. on Accelerator and Large Experimental Physics Control Systems (ICALEPCS'21), Shanghai, China, Oct. 2021, pp. 132-137.
- J. Rymer, G. A. Engeman, R. W. Hamm, and J. M. Potter, “A Compact RF Driven H- ion Source for Linac Injection”, in Proc. 14th Particle Accelerator Conf. (PAC'91), San Francisco, CA, USA, May 1991, pp. 1910-1913.
- T. J. Bian, S. An, F. P. Guan, L. Y. Ji, and S. M. Wei, “Feasibility Study on 10 MW-Class Ultra-High Power Cyclotron”, in Proc. 23rd Int. Conf. Cyclotrons Appl. (Cyclotrons'22), Beijing, China, Dec. 2022, paper FRAO02, pp. 359-363.
- W. Vinzenz, G. Hutter, G. Kube, W. Hartmann, W. Gutowski, and M. Pilz, “The RF-System of the new GSI High Current Linac HSI”, in Proc. 20th Linear Accelerator Conf. (LINAC'00), Monterey, CA, USA, Aug. 2000, paper THE05, pp. 977-979.
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