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Anomalous up-conversion dynamics in rare-earth doped yttrium oxide powders

机译:稀土掺杂氧化钇粉末的异常上转换动力学

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We performed up-conversion (UC) experiments in rare-earth (Er~(3+) Tm~(3+), Nd~(3+)) doped yttrium oxide (Y2O3) powders using a liigh power (1.6 W) near-infrared (808 nm) diode laser modulated at 20 Hz as the excitation source. Below the threshold for incandescence, the analysis of the dynamics of the UC luminescence showed the presence of an unusual depletion of the luminescence signal. This anomalous effect could be controlled by the laser excitation power or the modulation frequency or the combination of rare-earth species doped in the samples. The phenomenon was associated with a thermo-optical effect generated by strong laser absorption, poor thermal dissipation of the powder and energy transfer (ET) between different rare-earth species. The experimental results also led us to believe that the ET mechanism cools down the rare-earth donor, Tm~(3+), and heats up the rare-earth acceptor, Er~(3+).
机译:我们使用近功率(1.6 W)在稀土(Er〜(3+)Tm〜(3+),Nd〜(3+))掺杂氧化钇(Y2O3)粉末中进行了上转换(UC)实验-以20 Hz调制的红外(808 nm)二极管激光器作为激发源。低于白炽度的阈值,对UC发光动力学的分析表明存在异常的发光信号损耗。可以通过激光激发功率或调制频率或样品中掺杂的稀土元素的组合来控制这种异常效应。该现象与强激光吸收,粉末散热差以及不同稀土物种之间的能量转移(ET)产生的热光效应有关。实验结果还使我们相信,ET机制可冷却稀土供体Tm〜(3+)并加热稀土受体Er〜(3+)。

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