用于砷化镓光电阴极的变形窗玻璃对透光率的影响

Xin Guo, Feng Shi, Tiantian Jia, Ruoyu Zhang, Hongchang Cheng, Yijun Zhang
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引用次数: 0

摘要

为提高透射模式 NEA GaAs 阴极的空间分辨能力,本研究采用白光干涉仪测量热压接合后的光电阴极元件的表面配置。使用 Zernike 多项式实现了表面配置的精确拟合,并成功推导出 Zernike 多项式系数。此外,还将这些计算结果整合到光学设计软件中进行建模,旨在阐明光电阴极的传递函数与表面配置之间的关系。研究结果清楚地表明,与 60lp/mm 相对应的 MTF 值在 0° 和 5° 场角范围内保持稳定。然而,当场角扩展到 20° 时,MTF 值明显下降。其中,平面凹面光电阴极的传输性能下降最明显,其次是平面结构,而平面凸面结构的下降幅度最小。总之,这项研究为进一步推动光电阴极技术的发展提供了宝贵的参考。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of deformed window glass for GaAs photocathode on light transmission
To enhance the spatial resolution capability of transmission-mode NEA GaAs photocathodes, this study employed a white-light interferometer to measure the surface configurations of photocathode components post thermal compression bonding. Precise fitting of the surface configurations was achieved using Zernike polynomials, successfully deriving the Zernike polynomial coefficients. Further, these calculated results were integrated into optical design software for modeling, aiming to elucidate the relationship between the photocathode's transfer function and surface configurations. The findings clearly indicate that the MTF value corresponding to 60lp/mm remains stable within the 0° and 5° field angles. However, as the field angle extends to 20°, there is a significant decline in the MTF value. Among them, the transfer performance of the plano-concave photocathode decreases most prominently, followed by the flat structure, while the plano-convex structure exhibits the least decline. Overall, this research provides invaluable references for the further advancement of photocathode technology.
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