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BiBTeX citation export for WEPAB270: Characterization and Simulation of Optical Delay System for the Proof-of-Principle Experiment of Optical Stochastic Cooling at IOTA

@inproceedings{dick:ipac2021-wepab270,
  author       = {A.J. Dick and J.D. Jarvis and P. Piot},
  title        = {{Characterization and Simulation of Optical Delay System for the Proof-of-Principle Experiment of Optical Stochastic Cooling at IOTA}},
  booktitle    = {Proc. IPAC'21},
  pages        = {3269--3272},
  eid          = {WEPAB270},
  language     = {english},
  keywords     = {undulator, radiation, experiment, simulation, kicker},
  venue        = {Campinas, SP, Brazil},
  series       = {International Particle Accelerator Conference},
  number       = {12},
  publisher    = {JACoW Publishing, Geneva, Switzerland},
  month        = {08},
  year         = {2021},
  issn         = {2673-5490},
  isbn         = {978-3-95450-214-1},
  doi          = {10.18429/JACoW-IPAC2021-WEPAB270},
  url          = {https://jacow.org/ipac2021/papers/wepab270.pdf},
  note         = {https://doi.org/10.18429/JACoW-IPAC2021-WEPAB270},
  abstract     = {{The Optical Stochastic Cooling (OSC) experiment at Fermilab’s IOTA storage ring uses two undulators to cool the beam over many turns. The radiation emitted by electrons in the first undulator is delayed and imaged in the second undulator where it applies a corrective energy kick on the electrons. Imperfections in the manufacturing of the delay plates can lead to a source of error. This paper presents the experimental characterization of the absolute thickness of these delay plates using an interferometric technique. The measured "thickness maps" are implemented in the Synchrotron Radiation Workshop (SRW) program to assess their impact on the delayed radiation pulse.}},
}