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Generation of Emission Centers for Broadband NIR Luminescence in Bismuthate Glass by Femtosecond Laser Irradiation

机译:通过飞秒激光照射产生铋玻璃宽带NIR发光的发射中心的发射中心

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摘要

Bismuth-doped glasses have recently received significant interest as potential material for ultrabroadband optical amplification in the telecommunication spectral bands, as well as as gain material for fiber lasers. However, the nature of the active centers that are responsible for the observed near-infrared (NIR) luminescence is still highly debated. In order to probe the mechanism that leads to NIR emission in bismuth-containing glasses, femtosecond (fs) laser irradiation was used. It is shown that local absorption properties in the visible spectral range can be altered in initially transparent bismuthate glasses after fs laser irradiation. Induced absorption centers exhibit the well-known broadband optical emission peaking at similar to 1250 nm when excited with a 785 nm diode laser. Absorption and emission intensities increase with increasing average pulse energy. These observations are interpreted as a photo-induced reduction reaction of Bi(3+) to Bi(+) species, while the previously discussed formation of Bi-clusters by ion diffusion is excluded due to the very short interaction time that results from the use of fs laser. Bi(+) species are, therefore, proposed as the major origin of NIR emission from Bi-doped glasses.
机译:铋掺杂的眼镜最近接受了电信光谱带中超读光学放大的潜在材料的显着兴趣,以及光纤激光器的增益材料。然而,负责观察到的近红外(NIR)发光的活跃中心的性质仍然很高。为了探测导致含铋眼镜中的NIR发射的机制,使用Femtosecond(FS)激光辐射。结果表明,在FS激光照射之后,在最初的透明铋玻璃中可以在最初的透明铋玻璃中改变局部吸收性能。诱导的吸收中心在用785nm二极管激光激发时,在类似于1250nm的众所周知的宽带光学发射峰值。随着平均脉冲能量的增加,吸收和排放强度增加。这些观察结果被解释为Bi(3+)至Bi(+)物种的光诱导的降低反应,而先前讨论了通过离子扩散的Bi-簇的形成是由于使用的非常短的相互作用时间而被排除在外FS激光器。因此,Bi(+)物种提出作为双掺杂眼镜的丙二虫发射的主要起源。

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