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BiBTeX citation export for WEC1I1: Radiation Hardened Beam Instrumentations for Multi-Mega-Watt Beam Facilities

@inproceedings{yonehara:hb2023-wec1i1,
  author       = {K. Yonehara},
  title        = {{Radiation Hardened Beam Instrumentations for Multi-Mega-Watt Beam Facilities}},
% 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        = {199--204},
  paper        = {WEC1I1},
  language     = {english},
  keywords     = {target, proton, radiation, instrumentation, operation},
  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-WEC1I1},
  url          = {https://jacow.org/hb2023/papers/wec1i1.pdf},
  abstract     = {{A beam instrumentation is an essential element to successfully operate an accelerator machine in which various diagnostic and beam control system are integrated. However, the beam instrumentation performance is often constrained by a prompt radiation dose, integrated radiation dose, operation (ambient) temperature and humidity, available space, and strength of embedded electromagnetic fields at the monitor. These constraints will limit the dynamic range of operational beam parameters, like the maximum achievable beam power. A seamless R&D effort to develop the radiation hardened beam instrumentations has been made for future multi-MW beam facilities. In this presentation, I will show a major beam facility and beam instrumentation which runs or plans a MW beam operation in the near future.}},
}