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Low threshold lasing emissions from a single upconversion nanocrystal

机译:从单个上转换纳米晶体的低阈值激光发射

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Cross-relaxation among neighboring emitters normally causes self-quenching and limits the brightness of luminescence. However, in nanomaterials, cross-relaxation could be well-controlled?and employed for increasing the luminescence efficiency at specific wavelengths. Here we report that cross-relaxation can modulate both the brightness of single upconversion nanoparticles and the threshold to reach population inversion, and both are critical factors in producing the ultra-low threshold lasing emissions in a micro cavity laser. By homogenously coating a 5-μm cavity with a single layer of nanoparticles, we demonstrate that doping Tm 3 ions at 2% can facilitate the electron accumulation at the intermediate state of 3 H 4 level and efficiently decrease the lasing threshold by more than one order of magnitude. As a result, we demonstrate up-converted lasing emissions with an ultralow threshold of continuous-wave excitation of ~150?W/cm 2 achieved at room temperature. A single nanoparticle can lase with a full width at half-maximum as narrow as ~0.45?nm.
机译:相邻发射器之间的交叉放松通常会导致自淬火并限制发光的亮度。然而,在纳米材料中,可以很好地控制易弛豫?并且用于增加特定波长的发光效率。在这里,我们报告的是,交叉弛豫可以调节单个上变纳米颗粒的亮度和阈值以达到群体反演,并且两者都是在微腔激光器中产生超低阈值激光发射的关键因素。通过用单层纳米颗粒均匀涂覆5μm腔,我们证明掺杂Tm 3离子为2%可以促进在3小时4水平的中间状态下的电子积聚,并有效地减少多个订单的激光阈值幅度。结果,我们展示了在室温下实现的连续波激励的超级波激发的超级转换激光排放。单个纳米颗粒可以在半最大值为窄为〜0.45Ω·Nm的半最大宽度。

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