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Zi-Heng Wang 《中国物理 B》2022,31(9):98505-098505
To describe the dynamic response characteristics of the laminated graded-bandgap GaAs-based photocathode with distributed Bragg reflection structure, a general theoretical temporal response model is deduced by combining the unsteady continuity equation and numerical calculation method. Through the model, the contribution of the distribution Bragg reflection structure and graded-bandgap emission layer to the temporal response are investigated. Meanwhile, the relationships between the temporal response characteristics of the laminated GaAs-based photocathode and different structural parameters are also analyzed, including average electron decay time, emission layer thickness, and incident light wavelength. It is found that the introduction of distribution Bragg reflection (DBR) layer solves the discrepancy between the absorption capability of the emission layer and the temporal response. Moreover, the distributed Bragg reflection layer can improve the time response by optimizing the initial photoelectron distribution. The improvement effect of the DBR layer on the temporal response is enhanced with the emission layer thickness decreasing or the incident light wavelength increasing. These results explain the effect of the DBR layer of the photocathode on the dynamic characteristics, which can offer a new insight into the dynamic research of GaAs-based photocathode.  相似文献   
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为提高激活后GaAs光阴极的稳定性,延长微光夜视器件的工作寿命,围绕Cs/O激活方法和衰减特性进行实验研究.通过对比传统"yo-yo"激活法和改进"yo-yo"激活法在Cs/O激活光电流、光谱响应以及光照衰减方面的差异,发现采用改进"yo-yo"激活法的GaAs光阴极光谱灵敏度更高且稳定性更好.利用四极质谱仪监测真空腔...  相似文献   
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