首页> 外文会议>Conference on Applied Optics and Photonics China >The up-conversion luminescence In the Er~(3+)/Yb~(3+)/Tm~(3+) tri-doped tellurite glass mlcrosphere coupled by the tapered fiber
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The up-conversion luminescence In the Er~(3+)/Yb~(3+)/Tm~(3+) tri-doped tellurite glass mlcrosphere coupled by the tapered fiber

机译:ER〜(3 +)/ Yb〜(3 +)/ Tm〜(3+)三掺杂的碲酸盐玻璃Mlcraly的上转化发光耦合锥形纤维

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In this paper, transparent Er~(3+)/Yb~(3+)/Tm~(3+) tri-doped tellurite glass samples were prepared by high temperature calcination method and drawn into filaments when in molten state. The tip of each filament selected was melted by flame and subsequently fabricated into a microsphere via the surface tension of liquid. The microsphere resonators were effectively pumped by 976 nm/1550 nm continuous wave (CW) lasers respectively, using the same biconical tapered fiber which acted as a coupler, transmitting the pump light into the microspheres under uniform conditions and collecting the up-conversion (UC) fluorescence from the microspheres at the same time. We obtained blue, green and red UC emission upon both two types of excitation, but with different intensity distributions. The UC luminescence mechanism of the Er~(3+)/Yb~(3+)/Tm~(3+) tri-doped samples has been investigated in the perspective of the energy level structure of these rare earth (RE) ions. We find that different pump light sources may cause different energy transfer paths among ions, which thus results in the difference on spectral distributions. It is predicted that such kind of multi-color luminescence material has potential to be applied in the white lighting. In addition, we also did some theoretical analyses on the propagation constant matching that greatly influences the coupling between the microsphere and the tapered fiber, and discovered the fact that it may require a pretty small size of the microsphere for effective coupling when there exists a large refractive index difference between them. Besides, it seems that the waist of the fiber has to get thinner when the light has a shorter wavelength. The outcomes from our experiments were in correspondence with the results above. These results will pave the way for the research on further improvement of the coupling efficiency between the microsphere and the tapered fiber.
机译:在本文中,通过高温煅烧方法制备透明ER〜(3 +)/ Yb〜(3 +)/ Tm〜(3+)三掺杂的碲酸盐玻璃样品,并在熔融状态下拉入长丝。选择的每根细丝的尖端被火焰熔化,随后通过液体的表面张力制成微球。使用与耦合器的相同的双焦型锥形纤维分别有效地泵送了976nm / 1550nm连续波(CW)激光,以均匀的条件将泵浦光传输到微球中并收集上转换(UC )同时来自微球的荧光。我们在两种励磁上获得了蓝色,绿色和红色的UC排放,但具有不同的强度分布。在这些稀土(RE)离子的能量水平结构的角度,已经研究了ER〜(3 +)/ Yb〜(3 +)/ TM〜(3+)三掺杂样品的UC发光机制。我们发现不同的泵浦光源可能导致离子之间的不同能量转移路径,从而导致光谱分布的差异。据预测,这种多色发光材料具有施加在白色照明中的可能性。此外,我们还对传播恒定匹配进行了一些理论分析,这极大地影响了微球和锥形纤维之间的耦合,并发现了它可能需要相当小尺寸的微球,以便在存在大的情况下有效耦合它们之间的折射率差异。此外,似乎纤维的腰部必须在光线具有较短波长时变薄。我们的实验结果与上述结果相对应。这些结果将为进一步提高微球和锥形纤维之间的耦合效率的研究铺平了方法。

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