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BiBTeX citation export for MOPCAV013: LCLS-II-HE Vertical Acceptance Testing Plans

@inproceedings{maniscalco:srf2021-mopcav013,
  author       = {J.T. Maniscalco and S. Aderhold and T.T. Arkan and M. Checchin and J.D. Fuerst and D. Gonnella and J. Hogan and J.A. Kaluzny and A.D. Palczewski and S. Posen and C.E. Reece and K.M. Wilson},
% author       = {J.T. Maniscalco and S. Aderhold and T.T. Arkan and M. Checchin and J.D. Fuerst and D. Gonnella and others},
% author       = {J.T. Maniscalco and others},
  title        = {{LCLS-II-HE Vertical Acceptance Testing Plans}},
  booktitle    = {Proc. SRF'21},
% booktitle    = {Proc. 20th International Conference on RF Superconductivity (SRF'21)},
  pages        = {291--294},
  eid          = {MOPCAV013},
  language     = {english},
  keywords     = {cavity, cryomodule, multipactoring, HOM, accelerating-gradient},
  venue        = {East Lansing, MI, USA},
  series       = {International Conference on RF Superconductivity},
  number       = {20},
  publisher    = {JACoW Publishing, Geneva, Switzerland},
  month        = {10},
  year         = {2022},
  issn         = {2673-5504},
  isbn         = {978-3-95450-233-2},
  doi          = {10.18429/JACoW-SRF2021-MOPCAV013},
  url          = {https://jacow.org/srf2021/papers/mopcav013.pdf},
  abstract     = {{LCLS-II-HE has performance requirements similar to but generally more demanding than those of LCLS-II, with an operating gradient of 21 MV/m (up from 16 MV/m in LCLS-II) and tighter restrictions on field emission and multipacting. In this paper, we outline the requirements for the 1.3 GHz cavities and the plans for qualification of these cavities by vertical test. We discuss lessons learned from LCLS-II and highlight the changes implemented in the vertical test procedure for the new project.}},
}