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BiBTeX citation export for THAFP08: Performance of the Ion Chain at the CERN Injector Complex and Transmission Studies During the 2023 Slip Stacking Commissioning

@inproceedings{slupecki:hb2023-thafp08,
  author       = {M. Slupecki and S.C.P. Albright and R. Alemany-Fernández and M.E. Angoletta and T. Argyropoulos and H. Bartosik and P. Baudrenghien and G. Bellodi and M. Bozzolan and R. Bruce and C. Carli and J. Cenede and H. Damerau and A. Frassier and D. Gamba and G. Hagmann and A. Huschauer and V. Kain and G. Khatri and D. Küchler and A. Lasheen and K.S.B. Li and E. Mahner and G. Papotti and G. Piccinini and A. Rey and M. Schenk and R. Scrivens and A. Spierer and G. Tranquille and D. Valuch and F.M. Velotti and E. Waagaard and R. Wegner},
% author       = {M. Slupecki and S.C.P. Albright and R. Alemany-Fernández and M.E. Angoletta and T. Argyropoulos and H. Bartosik and others},
% author       = {M. Slupecki and others},
  title        = {{Performance of the Ion Chain at the CERN Injector Complex and Transmission Studies During the 2023 Slip Stacking Commissioning}},
% booktitle    = {Proc. HB'23},
  booktitle    = {Proc. 68th Adv. Beam Dyn. Workshop High-Intensity High-Brightness Hadron Beams (HB'23)},
  eventdate    = {2023-10-09/2023-10-13},
  pages        = {418--421},
  paper        = {THAFP08},
  language     = {english},
  keywords     = {injection, emittance, linac, MMI, extraction},
  venue        = {Geneva, Switzerland},
  series       = {ICFA Advanced Beam Dynamics Workshop on High-Intensity and High-Brightness Hadron Beams},
  number       = {68},
  publisher    = {JACoW Publishing, Geneva, Switzerland},
  month        = {04},
  year         = {2024},
  issn         = {2673-5571},
  isbn         = {978-3-95450-253-0},
  doi          = {10.18429/JACoW-HB2023-THAFP08},
  url          = {https://jacow.org/hb2023/papers/thafp08.pdf},
  abstract     = {{The 2023 run has been decisive for the LHC Ion Injector Complex. It demonstrated the capability of producing full trains of momentum slip stacked lead ions in the SPS. Slip stacking is a technique of interleaving particle trains, reducing the bunch spacing in SPS from 100 ns to 50 ns. It is needed to reach the total ion intensity requested by the HL-LHC project, as defined by updated common LIU/HL-LHC target beam parameters. This paper reviews the lead beam characteristics across the Ion Injector Complex, including transmission efficiencies up to the SPS extraction. It also documents the difficulties found during the commissioning and the solutions put in place.}},
}