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Improved performance of GaAs photocathodes using effective activation technique

机译:使用有效激活技术提高GaAs光电阴极的性能

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To achieve negative-electron-affinity state, the atomically clean surface of GaAs-based photocathode is usually activated by cesium and oxygen in the ultrahigh vacuum environment. In view of the required computer-control of evaporation flow rates, the solid oxygen dispenser instead of gaseous oxygen is urgently needed just as the regular cesium dispenser. Accordingly, the solid cesium and oxygen dispensers were applied to activate epitaxial GaAs cathode samples. Two types of solid oxygen dispensers composed of barium peroxide powder and silver oxide powder respectively are employed to improve cathode photoemission performance. The experimental results show that the barium peroxide-based oxygen dispenser can release more oxygen and bring in higher activation photocurrent and spectral response than the silver oxide-based one. The unsatisfactory feature is that the silver oxide-based oxygen dispenser released effectual oxygen gas more slowly than the barium peroxide-based oxygen dispenser. Therefore, an effective activation technique was proposed to ameliorate this unfavorable phenomenon for the silver oxide-based dispenser, which can bring out the desired symmetry of photocurrent curve shape during the Cs/O alternate activation process. The improved activation technique would provide guidance for the optimization of activation craft.
机译:为了实现负电子亲和力状态,基于GaAs的光电阴极的原子清洁表面通常由超高真空环境中的铯和氧气激活。鉴于蒸发流速所需的计算机控制,迫切需要固体氧气分配器代替气态氧气,就像常规铯分配器一样。因此,施加固体铯和氧气分配器以激活外延GaAs阴极样品。采用两种类型的固体氧气分配器和氧化银粉末组成,以改善阴极光缩放性能。实验结果表明,基于过氧化氢的氧气分配器可以释放出更多的氧气并引入比氧化银的氧化银和光谱响应更高。不令人满意的特征是氧化银基的氧气分配器比过氧化钡的氧气分配器更缓慢地释放有效的氧气。因此,提出了一种有效的活化技术以改善氧化银的分配器的这种不利现象,其可以在CS / O交替活化过程中产生光电流曲线形状的所需对称性。改进的激活技术将为激活工艺提供指导。

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