Ion-beam-assisted growth of cesium-antimonide photocathodes

Pallavi Saha, Eric Montgomery, Shashi Poddar, Oksana Chubenko, Siddharth Karkare
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Abstract

We report on the novel use of a Cs+ ion gun for an ion-beam-assisted molecular-beam-epitaxy (IBA-MBE) method to sequentially deposit Cs-Sb cathodes on room temperature substrates as opposed to the standard technique of thermal evaporation on elevated-temperature substrates. The details of the ultrahigh-vacuum chamber, the Cs+ ion source, and the growth technique are elaborated. The final quantum efficiency (QE) is reasonably good for Cs-Sb cathodes grown on two different substrates—Si (100) and strontium titanate—and is comparable to the QE of cathodes grown using thermal sources. This suggests that IBA-MBE could be a viable alternative to grow alkali-antimonides without substrate heating, paving the way for the growth of epitaxial alkali-antimonides in a more reproducible fashion, which may help improve the efficiency of photon detectors and accelerator applications that use alkali-antimonides as electron sources.
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离子束辅助锑化铯光电阴极的生长
我们报道了一种新的使用Cs+离子枪的离子束辅助分子束外延(IBA-MBE)方法,该方法可以在室温衬底上顺序沉积Cs- sb阴极,而不是在高温衬底上热蒸发的标准技术。详细介绍了超高真空室、铯离子源和生长技术。在si(100)和钛酸锶两种不同的衬底上生长的Cs-Sb阴极的最终量子效率(QE)相当好,与使用热源生长的阴极的QE相当。这表明IBA-MBE可能是一种可行的替代方法,可以在没有衬底加热的情况下生长碱锑化物,为外延碱锑化物以更可复制的方式生长铺平道路,这可能有助于提高使用碱锑化物作为电子源的光子探测器和加速器的效率。
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