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BiBTeX citation export for THYE4: Development of an Ultra-Low Vibration Cryostat Based on a Closed-Cycle Cryocooler

@inproceedings{roca:napac2022-thye4,
  author       = {R.W. Roca and E.W. Knight and R.A. Kostin and Y. Zhao},
  title        = {{Development of an Ultra-Low Vibration Cryostat Based on a Closed-Cycle Cryocooler}},
& booktitle    = {Proc. NAPAC'22},
  booktitle    = {Proc. 5th Int. Particle Accel. Conf. (NAPAC'22)},
  pages        = {874--876},
  eid          = {THYE4},
  language     = {english},
  keywords     = {vacuum, radiation, cryogenics, instrumentation, synchrotron},
  venue        = {Albuquerque, NM, USA},
  series       = {International Particle Accelerator Conference},
  number       = {5},
  publisher    = {JACoW Publishing, Geneva, Switzerland},
  month        = {10},
  year         = {2022},
  issn         = {2673-7000},
  isbn         = {978-3-95450-232-5},
  doi          = {10.18429/JACoW-NAPAC2022-THYE4},
  url          = {https://jacow.org/napac2022/papers/thye4.pdf},
  abstract     = {{Low temperature and low vibration cryostats are useful in a variety of applications such as x-ray diffraction, quantum computing, x-ray monochromators and cryo-TEMs. In this project, we explore an ultra-low vibration cryostat with the cooling provided by a closed cycle cryocooler. Closed-cycle cryocoolers inevitably introduce vibrations into the system, and in this project, flexible copper braiding was used to decouple vibrations and provide cooling at the same time. In order to develop the cryostat, capacity map of a two stage Sumitomo cryocooler was measured as well as vibration transmission through different copper braids using an IR interferometer. This paper covers the capacity map and vibration measurements in the first prototype.}},
}