Acta Photonica Sinica, Volume. 52, Issue 8, 0812001(2023)
Effect of Incident Light Scattering at AlGaAs Window Layer Interface on Resolution of Transmission-mode GaAs Photocathode
[1] LIU Jian, GUO Yiliang, FENG Cheng et al. Improved preparation techniques for preparing high-performance GaAs photocathodes[J]. Applied Optics, 59, 8147-8151(2020).
[2] CHRZANOWSKI K. Review of night vision technology[J]. Opto-Electronics Review, 21, 153-181(2013).
[3] KARKARE S, BOULET L, CULTRERA L et al. Ultrabright and ultrafast Ⅲ--Ⅴ semiconductor photocathodes[J]. Physical Review Letters, 112, 097601(2014).
[4] FENG Cheng, ZHANG Yijun, QIAN Yunsheng et al. Improved quantum efficiency and stability of GaAs photocathode using favorable illumination during activation[J]. Ultramicroscopy, 202, 128-132(2019).
[5] JIN Xiuguang, OHKI S, ISHIKAWA T et al. Analysis of quantum efficiency improvement in spin-polarized photocathode[J]. Journal of Applied Physics, 120, 164501(2016).
[6] JIAO Gangcheng, ZHANG Kaimin, ZHANG Yijun et al. Effect of improved 'yo-yo' Cs/O alternate activation method on stability of GaAs photocathode[J]. Acta Photonic Sinica, 51, 0212001(2022).
[7] DING Xiaojun, GE Xiaowan, ZOU Jijun et al. Photoemission characteristics of graded band-gap AlGaAs/GaAs wire photocathode[J]. Optics Communications, 367, 149-154(2016).
[8] QIU Yafeng, YAN Wuling, HUA Sangtun et al. Resolution research of low-light-level image intensifier based on electronic trajectory tracking[J]. Acta Photonica Sinica, 49, 1223003(2020).
[9] DENG Wenjuan, ZHU Bin, WANG Zhuangfei et al. Resolution characteristics of varying doping and varying composition AlxGa1-xAs/GaAs reflective photocathodes[J]. Acta Physica Sinica, 71, 157901(2022).
[10] REN Ling, CHANG Benkang, HOU Ruili et al. Transport characteristic of photoelectrons in uniform-doing GaAs photocathode[J]. Acta Physica Sinica, 60, 087202(2011).
[11] WANG Honggang, JI Xuehong, HOU Dianli et al. Effect of electron lateral diffusion in transmission-mode varied-doping Al0.37Ga0.63N photocathode on resolution[J]. Journal of Optoelectronics and Advanced Materials, 24, 28-34(2022).
[12] HARVEY J E, KOTHA A. Scattering effects from residual optical fabrication errors[C], 2576, 155-174(1995).
[13] HARVEY J E, PFISTERER R H. Evolution of the transfer function characterization of surface scatter phenomena[C], 9961, 99610E(2016).
[14] CHURCH E L. Fractal surface finish[J]. Applied Optics, 27, 1518-1526(1988).
[15] MANUEL N V, NICOLAS G. A detailed study of the scattering of scalar waves from random rough surface[J]. Optica Acta: International Journal of Optics, 28, 1651-1672(1981).
[16] ZHAO Jie, CHEN Zhenxue, WU Q M J et al. Improved edge-guided network for single image super-resolution[J]. Multimedia Tools and Applications, 81, 343-365(2022).
[17] LIU Qingxin, LI N, JIA Heming et al. Modified remora optimization algorithm for global optimization and multilevel thresholding image segmentation[J]. Mathematics, 10, 1014(2022).
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Xin GUO, Feng SHI, Tiantian JIA, Ruoyu ZHANG, Hongchang CHENG, Yijun ZHANG. Effect of Incident Light Scattering at AlGaAs Window Layer Interface on Resolution of Transmission-mode GaAs Photocathode[J]. Acta Photonica Sinica, 2023, 52(8): 0812001
Category: Instrumentation, Measurement and Metrology
Received: Dec. 5, 2022
Accepted: Jan. 16, 2023
Published Online: Sep. 26, 2023
The Author Email: Feng SHI (shfys@126.com)