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Nanostructuring the Er-Yb distribution to improve the photoluminescence response of thin films

机译:纳米结构化Er-Yb分布以改善薄膜的光致发光响应

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Thin films of amorphous aluminum oxide (a-Al_(2)O_(3)) codoped with Er~(3+) and Yb~(3+) ions have been in-depth nanostructured by distributing the rate earth (RE) ions in layers separated in the 0-3 nm range. The Yb to Er concentration ratio is varied from 0 to 3.6. The photoluminescence (PL) response at 1.53 μm exhibits an increase of up to two orders of magnitude with respect to that of films doped only with Er. The PL intensity is improved when Yb~(3+) and Er~(3+) ions are in separate layers and the results show that efficient Yb~(3+) to Er~(3+) energy transfer can be achieved for separations up to 3 nm. Furthermore, it is shown that designing an adequate RE distribution, for the same total RE content and Yb to Er concentration ratio, can enhance the PL intensity by a further factor of two. It is shown that the Er~(3+) PL response is improved because of a reduction of the RE ciustering and an improvement of the energy transfer from Yb~(3+) to Er~(3+) ions.
机译:通过将Er〜(3+)和Yb〜(3+)离子共掺杂的非晶态氧化铝(a-Al_(2)O_(3))薄膜已通过将稀土离子(RE)分布在层在0-3 nm范围内分开。 Yb与Er的浓度比在0至3.6之间变化。相对于仅掺杂Er的薄膜,在1.53μm的光致发光(PL)响应显示最多增加了两个数量级。当Yb〜(3+)和Er〜(3+)离子位于单独的层中时,PL强度得到改善,结果表明,可以实现有效的Yb〜(3+)到Er〜(3+)的能量转移高达3 nm。此外,表明对于相同的总RE含量和Yb / Er浓度比,设计适当的RE分布可以将PL强度提高两倍。结果表明,Er〜(3+)PL响应得到了改善,这是因为RE的聚结减少以及从Yb〜(3+)到Er〜(3+)离子的能量转移得到了改善。

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