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Integrated photonics for low transverse emittance, ultrafast negative electron affinity GaAs photoemitters

机译:用于低横向辐射率的集成光子,超快负电子亲和GAAS光电仪

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摘要

Photocathodes exhibiting simultaneous high quantum efficiency, low mean transverse energy (MTE), and fast temporal response are critical for next generation electron sources. Currently, caesiated negative electron affinity GaAs photocathodes have demonstrated good overall results [Bell and Spicer, Proc. IEEE 58, 1788 (1970); Pierce et al., Appl. Phys. Lett. 26, 670 (1975)]. However, due to the nature of the photoemission process and the details of the Cs surface structure, a tradeoff exists. A low mean transverse energy of similar to 25meV can be obtained by using photons with near bandgap energy, at the cost of an unacceptably high response time, or higher energy photons can be used with a mean transverse energy of similar to 60meV with acceptable response times of 2-5ps [Karkare et al., J. Appl. Phys. 113, 104904 (2013); Honda et al., Jpn. J. Appl. Phys. 52, 086401 (2013); Pastuszka et al. Appl. Phys. Lett. 71, 2967 (1997)]. Here, it is shown through a calibrated simulation that a thin layer of caesiated GaAs on a waveguide can potentially exhibit photoemission with MTEs similar to 30meV, ultrafast response times of similar to 0.2-1ps, and quantum efficiency of 1%-10%, breaking the traditional tradeoffs associated with bulk negative electron affinity photoemitters.
机译:光电阴极表现出同时高量子效率,低平均横向能量(MTE)和快速时间响应对于下一代电子来源至关重要。目前,显着的负电子亲和力GaAs光电阴极已经证明了良好的整体结果[钟声和香叶师,Proc。 IEEE 58,1788(1970); Pierce等人。,appl。物理。吧。 26,670(1975)]。然而,由于光电过程的性质和CS表面结构的细节,存在权衡。通过使用近带隙能量的光子可以获得与25mev相似的低平均横向能量,以不可接受的高响应时间,或者更高的能量光子可以与相似的平均横向能量与可接受的响应时间相似使用。 2-5ps [Karkare等,J. Appl。物理。 113,104904(2013); Honda等。,JPN。 J. Appl。物理。 52,086401(2013); Pastuszka等。苹果。物理。吧。 71,2967(1997)]。这里,通过校准模拟示出,使得波导上的薄层的薄层可以展示具有类似于30mev的MTE的光曝光,超快响应时间与0.2-1ps相似,量子效率为1%-10%,破裂与散装负电子亲和光电有关的传统权衡。

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  • 来源
    《Journal of Applied Physics 》 |2019年第3期| 033102.1-033102.7| 共7页
  • 作者单位

    Univ Southern Calif Dept Elect Engn Los Angeles CA 90089 USA;

    Univ Southern Calif Dept Elect Engn Los Angeles CA 90089 USA;

    Univ Southern Calif Dept Elect Engn Los Angeles CA 90089 USA;

    Univ Southern Calif Dept Elect Engn Los Angeles CA 90089 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);
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  • 正文语种 eng
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