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Emission decay and energy transfer in Yb/Tm Y-codoped fibers based on nano-modified glass

机译:基于纳米改性玻璃的掺Yb / Tm掺Y光纤的发射衰减和能量转移

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摘要

We report the results of an experimental investigation and theoretical analysis of luminescence decay in Yb/Tm Y-codoped fibers based on nano-modified glass. Based on the experimental results, numerical simulations allowed us to estimate the energy transfer efficiency between Yb~(3+) and Tm~(3+) ions. It was shown that yttria enhances the Yb/Tm energy transfer making fibers with Y-codoping a promising candidate for the development of light sources for laser applications and up-conversion emitters for visualization applications. These fibers demonstrate energy transfer efficiency of ~50%, which makes them attractive for diode-pumping of Yb-ions at a wavelength of 975 nm.
机译:我们报告了基于纳米改性玻璃的Yb / Tm Y掺杂光纤中的发光衰减的实验研究和理论分析的结果。基于实验结果,数值模拟使我们能够估算Yb〜(3+)与Tm〜(3+)离子之间的能量转移效率。结果表明,氧化钇增强了Yb / Tm能量转移,使掺Y掺杂的光纤成为开发激光应用光源和上转换发射器用于可视化应用的有前途的候选者。这些纤维的能量转移效率约为50%,这使其对975 nm波长的Yb离子的二极管泵浦具有吸引力。

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