Radiation in diamond, leucosapphire, and quartz under the excitation of electron beam with an energy of up to 400 keV

V. Tarasenko, V. Oleshko, E. Lipatov, M. Erofeev
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Abstract

The paper presents measurement data on the radiation excited in synthetic diamonds, leucosapphire, and quartz KU1 at a wavelength of 200–800 nm by a pulsed electron beam with an energy of up to 400 keV. The crystals reveal wide bands whose intensity increases with decreasing wavelength in the range 220–400 nm. For leucosapphire and quartz, the radiation pulse at these wavelengths is close in duration to the electron beam current pulse, suggesting that it is Cherenkov radiation. For synthetic diamonds, both Cherenkov radiation and pulsed cathodoluminescence are detected in this spectral region. In particular, an intense band of free excitons with its maximum at 235 nm is found at high beam current densities and electron energies.
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在能量高达400kev的电子束激发下,钻石、白蓝宝石和石英中的辐射
本文介绍了在200 ~ 800 nm波长内,用能量高达400 keV的脉冲电子束激发合成金刚石、白玉和石英KU1的辐射的测量数据。在220 ~ 400 nm范围内,晶体呈现出宽波段,其强度随波长的减小而增大。对于白蓝宝石和石英,这些波长的辐射脉冲在持续时间上接近电子束电流脉冲,这表明它是切伦科夫辐射。对于人造钻石,切伦科夫辐射和脉冲阴极发光都在这个光谱区域被检测到。特别是,在高束流密度和高电子能量下,发现了一个在235 nm处最大的自由激子带。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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