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BiBTeX citation export for TUPTB036: Equidistant Optimization of Elliptical SRF Standing Wave Cavities

@inproceedings{shemelin:srf2023-tuptb036,
  author       = {V.D. Shemelin and V.P. Yakovlev},
  title        = {{Equidistant Optimization of Elliptical SRF Standing Wave Cavities}},
% booktitle    = {Proc. SRF'23},
  booktitle    = {Proc. 21th Int. Conf. RF Supercond. (SRF'23)},
  pages        = {480--484},
  eid          = {TUPTB036},
  language     = {english},
  keywords     = {cavity, SRF, ECR, linac, acceleration},
  venue        = {Grand Rapids, MI, USA},
  series       = {International Conference on RF Superconductivity},
  number       = {21},
  publisher    = {JACoW Publishing, Geneva, Switzerland},
  month        = {09},
  year         = {2023},
  issn         = {2673-5504},
  isbn         = {978-3-95450-234-9},
  doi          = {10.18429/JACoW-SRF2023-TUPTB036},
  url          = {https://jacow.org/srf2023/papers/tuptb036.pdf},
  abstract     = {{A record accelerating rate was achieved earlier in standing wave (SW) SRF cavities when their shape was optimized for lower peak surface magnetic field. In view of new materials with higher limiting magnetic fields, expected for SRF cavities, in the first line Nb₃Sn, the approach to optimization of cavity shape should be revised. A method of equidistant optimization, offered earlier for traveling wave cavities is applied to SW cavities. It is shown here that without limitation by magnetic field, the maximal accelerating rate is defined to a significant degree by the cavity shape. For example, for a cavity with the aperture radius Ra = 35 mm the minimal ratio of the peak surface electric field to the accelerating rate is about Epk/E_{acc} = 1.54. So, with the maximal surface field experimentally achieved E_{p}k ¿ 125 MV/m, the maximal achievable accelerating rate is about 80 MeV/m even if there are no restrictions by the magnetic field. Another opportunity ¿ optimization for a low magnetic field, is opening for the same material, Nb₃Sn, with the purpose to have a high quality factor and increased accelerating rate that can be used for industrial linacs.}},
}