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Demonstration of nitrogen-incorporated ultrananocrystalline diamond photocathodes in a RF gun environment

机译:RF枪环境中氮气掺入超混凝式金刚石光电处理的示范

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摘要

Quantum efficiency (QE), intrinsic emittance, and robustness are the three most important figures of merit for photocathodes, the first two determine the ultimate achievable brightness of an electron beam, and the third one directly correlates with the complications of a beamline design. Nitrogen-incorporated ultrananocrystalline diamond [(N)UNCD] materials are promising candidates for photocathode applications due to their remarkable electron emission performance as well as the moderate vacuum requirement. Two (N)UNCD photocathodes have been characterized in a realistic RF gun environment with the nicely balanced performance of all three figures of merit. The QE of the first (N)UNCD cathode (stored in air for two years before the test) was found to be 3.8 × 10~(-4) using a 262 nm UV laser and a cathode surface field of 30 MV/m. It was found that the QE of the second (N)UNCD sample (grown days before the test) was nearly the same and, therefore, demonstrates the exceptional environmental tolerance of the material. The intrinsic emittance of (N)UNCD was measured to be 1.00 μm/mm.
机译:量子效率(QE),内在发射率和鲁棒性是光电阴极的三个最重要的数字,前两者确定了电子束的最终可实现的亮度,第三个是与光束线设计的并发症相关联。氮气掺入的超混晶金刚石[(n)UNCOD]材料是由于其显着的电子发射性能以及适度的真空需求,对光电阴极应用的候选者。两个(n)个UNC标识光电阴极已经表征在一个现实的RF枪环境中,具有所有三个优点图的良好平衡性能。使用262nm uv激光器和30mV / m的阴极表面场发现第一(n)型外阴阴极(在测试前两年储存两年)的Qe。结果发现,第二(N)的UNC点样品(测试前几天)的QE几乎相同,因此证明了材料的特殊环境耐受性。测量(N)UNC的内在粘合率为1.00μm/ mm。

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  • 来源
    《Applied Physics Letters》 |2020年第17期|171903.1-171903.5|共5页
  • 作者单位

    Physics Department Illinois Institute of Technology Chicago Illinois 60616 USA;

    Physics Department Illinois Institute of Technology Chicago Illinois 60616 USA;

    Euclid TechLabs LLC Bolingbrook Illinois 60440 USA;

    High Energy Physics Division Argonne National Laboratory Lemont Illinois 60439 USA;

    High Energy Physics Division Argonne National Laboratory Lemont Illinois 60439 USA;

    High Energy Physics Division Argonne National Laboratory Lemont Illinois 60439 USA;

    High Energy Physics Division Argonne National Laboratory Lemont Illinois 60439 USA;

    High Energy Physics Division Argonne National Laboratory Lemont Illinois 60439 USA;

    Center for Nanoscale Materials Argonne National Laboratory Lemont Illinois 60439 USA;

    Euclid TechLabs LLC Bolingbrook Illinois 60440 USA;

    Euclid TechLabs LLC Bolingbrook Illinois 60440 USA;

    Euclid TechLabs LLC Bolingbrook Illinois 60440 USA;

    High Energy Physics Division Argonne National Laboratory Lemont Illinois 60439 USA;

  • 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
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