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[n] N. S. Azaryan et al., “Dubna-Minsk Activity on the Development of 1.3 GHz Superconducting Single-Cell RF-cavity”, in Proc. RuPAC'12, Saint Petersburg, Russia, Sep. 2012, paper WEPPD023, pp. 602-604.
[n] K. V. Taletskiy et al., “Comparative Study of Low Beta Multi-Gap Superconducting Bunchers”, in Proc. IPAC'18, Vancouver, Canada, Apr.-May 2018, pp. 2786-2789. doi:10.18429/JACoW-IPAC2018-WEPML041
[n] D. Bafia, A. Grassellino, O. S. Melnychuk, A. S. Romanenko, Z-H. Sung, and J. Zasadzinski, “Gradients of 50 MV/m in TESLA Shaped Cavities via Modified Low Temperature Bake”, in Proc. SRF'19, Dresden, Germany, Jun.-Jul. 2019, pp. 586-591. doi:10.18429/JACoW-SRF2019-TUP061
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References
- N. S. Azaryan et al., “Dubna-Minsk Activity on the Development of 1.3 GHz Superconducting Single-Cell RF-cavity”, in Proc. 23rd Russian Particle Accelerator Conf. (RuPAC'12), Saint Petersburg, Russia, Sep. 2012, paper WEPPD023, pp. 602-604.
- K. V. Taletskiy et al., “Comparative Study of Low Beta Multi-Gap Superconducting Bunchers”, in Proc. 9th Int. Particle Accelerator Conf. (IPAC'18), Vancouver, Canada, Apr.-May 2018, pp. 2786-2789.
- D. Bafia, A. Grassellino, O. S. Melnychuk, A. S. Romanenko, Z-H. Sung, and J. Zasadzinski, “Gradients of 50 MV/m in TESLA Shaped Cavities via Modified Low Temperature Bake”, in Proc. 19th Int. Conf. RF Superconductivity (SRF'19), Dresden, Germany, Jun.-Jul. 2019, pp. 586-591.
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