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首页> 外文期刊>Journal of Crystal Growth >Different behaviors of F+ centers due to electron beam irradiations between synthetic sapphire and Be-diffusion-treated natural sapphire
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Different behaviors of F+ centers due to electron beam irradiations between synthetic sapphire and Be-diffusion-treated natural sapphire

机译:合成蓝宝石与经Be扩散处理的天然蓝宝石之间电子束辐照导致F +中心的不同行为

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摘要

Cathodoluminescence (CL) intensities of F+ centers in Be-diffusion-post-treated natural sapphire (BNS) and synthetic sapphire have been found to substantially increase under continuous irradiations of 15-keV electrons with constant incident currents ranging from 0.1 to 2 mu A and to be represented approximately by an exponential saturation function of the electron fluence. The efficiency of F+-center CL emissions at room temperature (RT) was higher in the synthetic sapphire than in the BNS specimen. Whereas the CL intensity of the BNS sample had little temperature dependence, that of the synthetic sapphire decreased by approximately one order of magnitude with decreasing the specimen temperatures from RT to 85 K. In addition, time-resolved photoluminescence data measured for the 420-nm emission evidence a relatively shorter lifetime of the BNS specimen. These facts indicate that the natural sapphire which was successfully post-treated with Be diffusion had a slightly but substantially poorer crystalline quality than synthetic sapphire. Possible origins of these observed differences are discussed. (c) 2006 Elsevier B.V. All rights reserved.
机译:研究发现,经15 keV电子连续照射,入射电流范围为0.1至2μA的恒定入射电流和15keV电子的连续照射后,经Be扩散后处理的天然蓝宝石(BNS)和合成蓝宝石中F +中心的阴极发光(CL)强度显着增加。用电子注量的指数饱和函数近似表示。合成蓝宝石在室温(RT)下的F +中心CL发射效率高于BNS样品。 BNS样品的CL强度与温度的依赖性很小,而合成蓝宝石的CL强度则将样品的温度从RT降低到85 K,降低了大约一个数量级。此外,对于420 nm测量的时间分辨光致发光数据发射表明BNS标本的寿命相对较短。这些事实表明,用Be扩散成功地后处理的天然蓝宝石的晶体质量比合成蓝宝石的晶体质量稍差但明显较差。讨论了这些观察到的差异的可能来源。 (c)2006 Elsevier B.V.保留所有权利。

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