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On the compatibility of porous surfaces with cryogenic vacuum in future high-energy particle accelerators

机译:关于未来高能粒子加速器中多孔表面与低温真空的相容性

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摘要

Recently, pulsed laser processing of Cu samples has been demonstrated to produce rough surfaces whose structuring at the nanoscale ensures an impressive reduction of the secondary electron yield. This feature has an undoubted appealing for applications in future high energy particle accelerators. However, the effective application of such laser treated surfaces in this context requires a rigorous evaluation of their vacuum behavior, especially when used at cryogenic temperatures. To this aim, here, we compare thermal programmed desorption between 20 and 70 K by dosing Ar multilayers of different thicknesses on a laser treated copper substrate and on its flat counterpart. Our results highlight that the spongelike structural features confer to the laser treated sample's non-negligible effects due to the gas-substrate interaction. This results in a much vaster and higher desorption temperature range with respect to what is observed from the flat substrates. This evidence could render it very difficult to find temperature intervals for which detrimental vacuum transients could be avoided in the cryogenic beam pipes. On these bases, although the electron cloud mitigation efficiency has been settled, before definitely including porous surfaces in any cryogenic machine design, all the consequences of having a rough rather than a flat wall should be carefully evaluated. (C) 2019 Author(s).
机译:最近,已证明对Cu样品进行脉冲激光加工会产生粗糙的表面,其纳米级结构确保二次电子产率的显着降低。此功能无疑在未来的高能粒子加速器中具有吸引力。然而,在这种情况下有效地应用这种经激光处理的表面需要对其真空性能进行严格评估,尤其是在低温下使用时。为此,在这里,我们通过在激光处理的铜基板及其平坦的对应基板上投加不同厚度的Ar多层,比较20至70 K之间的热编程脱附。我们的结果强调,由于气体-基质之间的相互作用,海绵状结构特征赋予了激光处理样品不可忽略的影响。相对于从平坦的基板上观察到的结果,这导致更大和更高的解吸温度范围。该证据可能使得很难找到可以避免在低温束管中发生有害的真空瞬变的温度区间。在这些基础上,尽管已经确定了缓解电子云的效率,但是在任何低温机器设计中肯定包括多孔表面之前,应仔细评估具有粗糙而不是平坦的壁的所有后果。 (C)2019作者。

著录项

  • 来源
    《Applied Physics Letters》 |2019年第15期|153103.1-153103.5|共5页
  • 作者单位

    INFN, LNF, I-00044 Frascati, Italy;

    INFN, LNF, I-00044 Frascati, Italy;

    INFN, LNF, I-00044 Frascati, Italy|CNR, Ist Sistemi Complessi, Via Taurini 19, I-00185 Rome, Italy;

    INFN, LNF, I-00044 Frascati, Italy|CERN, CH-1211 Geneva 23, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-18 04:12:52

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