Mazuritskiy M I, Lerer A M, Marcelli A, Dabagov S B, Coreno M, D'Elia A, Rezvani S J
Physics Department, Southern Federal University, 344090 Rostov-on-Don, Russian Federation.
INFN - Laboratori Nazionali di Frascati, via Enrico Fermi 54, 00044 Frascati, Italy.
J Synchrotron Radiat. 2021 Mar 1;28(Pt 2):383-391. doi: 10.1107/S1600577520016458. Epub 2021 Feb 5.
Synchrotron radiation sources have been used to study the focusing properties and angular distribution of X-ray radiation at the exit of spherically bent microchannel plates (MCPs). In this contribution it is shown how soft X-ray radiation at energies up to 1.5 keV can be focused by spherically bent MCPs with curvature radii R of 30 mm and 50 mm. For these devices, a focus spot is detectable at a distance between the detector and the MCP of less than R/2, with a maximum focusing efficiency up to 23% of the flux illuminating the MCP. The soft X-ray radiation collected at the exit of microchannels of spherically bent MCPs are analyzed in the framework of a wave approximation. A theoretical model for the wave propagation of radiation through MCPs has been successfully introduced to explain the experimental results. Experimental data and simulations of propagating radiation represent a clear confirmation of the wave channeling phenomenon for the radiation in spherically bent MCPs.
同步辐射源已被用于研究球形弯曲微通道板(MCP)出口处X射线辐射的聚焦特性和角分布。在本论文中,展示了曲率半径R为30 mm和50 mm的球形弯曲MCP如何聚焦能量高达1.5 keV的软X射线辐射。对于这些装置,在探测器与MCP之间距离小于R/2处可检测到焦点光斑,最大聚焦效率高达照射MCP的通量的23%。在波动近似框架下分析了在球形弯曲MCP微通道出口处收集的软X射线辐射。已成功引入辐射通过MCP传播的理论模型来解释实验结果。传播辐射的实验数据和模拟明确证实了球形弯曲MCP中辐射的波导现象。