[2] Wang Shuangshuang, Liu Chunyang, Wang Guozheng, . Effect of X-ray energy on X-ray CsI(Tl) scintillation screen based on macroporous silicon[J]. Laser & Optoelectronics Progress, 59, 1734001(2022).
[3] Miller S R, Gaysinskiy V, Shestakova I, et al. Recent advances in columnar CsI(Tl) scintillat screens[C]Proceedings of SPIE 5923, Perating Radiation Systems Applications VII. 2005: 59230F.
[5] Guo Jinchuan, Niu Hanben, Zhou Bin. Influence of conglutination of CsI: Na columns on the resolution properties[J]. Acta Photonica Sinica, 30, 1214-1217(2001).
[6] Jiang Xiaoguo, Wang Wei, Wang Wanli. Conversion efficiency of the CsI: Tl crystal excited by X-ray[J]. High Power Laser and Particle Beams, 17, 203-205(2005).
[7] Yuan Yunlong. Research on Xray scintillation screen based on macropous silicon[D]. Changchun: Changchun University of Science Technology, 2020: 4147
[11] Kleimann P, Linnros J, Fröjdh C, et al. An Xray imaging pixel detect based on scintillat filled pes in a silicon matrix[J]. Nuclear Instruments Methods in Physics Research Section A: Accelerats, Spectrometers, Detects Associated Equipment, 2001, 460(1): 1519.
[12] Cha B K, Lee D H, Kim B, et al. High-resolution X-ray imaging based on pixel-structured CsI: Tl scintillating screens for indirect X-ray image sensors[J]. Journal of the Korean Physical Society, 59, 3670-3673(2011).
[13] Chen Qi, Wang Guozheng, Wang Ji, . Fabrication of high aspect ratio silicon microchannel by photo-electrochemical etching[J]. Semiconductor Technology, 43, 216-220(2018).
[15] Ding Furong, Ban Yong, Xia Zonghuang. Radiation physics[M]. Beijing: Peking University Press, 2004: 2428
[16] Physical Measurements Labaty. Xray fm fact, attenuation, scattering tables[DBOL]. https:www.nist.govpmlxrayfmfactattenuationscatteringtables.
[20] Xiao Feihu. Study on fabrication of siliconbased microstructures its application in the Xray detects[D]. Shenzhen: Shenzhen University, 2017