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首页> 外文期刊>Applied Physicsletters >Laser action in nanowires: Observation of the transition from amplified spontaneous emission to laser oscillation
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Laser action in nanowires: Observation of the transition from amplified spontaneous emission to laser oscillation

机译:纳米线中的激光作用:观察从放大的自发发射到激光振荡的过渡

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摘要

Direct evidence of the transition from amplified spontaneous emission to laser action in optically pumped zinc oxide (ZnO) nanowires, at room temperature, is presented. The optical power evolves from a superlinear to a linear regime as the pump power exceeds threshold, concomitant with a transition to directional emission along the nanowire and the emergence of well defined cavity Fabry-Perot modes around a wavelength of ≈385 nm, the intensity of which exceeds the spontaneous emission background by orders of magnitude. The laser oscillation threshold is found to be strongly dependent on nanowire diameter, with no laser oscillation observed for diameters smaller than ~150 nm. Finally, we use an alternative "head on" detection geometry to measure the output power of a single nanowire laser.
机译:提出了在室温下光泵浦氧化锌(ZnO)纳米线中从放大的自发发射到激光作用的转变的直接证据。当泵浦功率超过阈值时,光功率从超线性状态演变为线性状态,并伴随着沿纳米线向定向发射的过渡以及波长约385 nm左右的强度明确的腔法布里-珀罗模的出现。这超出了自发辐射本底数量级。发现激光振荡阈值很大程度上取决于纳米线的直径,对于小于约150 nm的直径,没有观察到激光振荡。最后,我们使用另一种“正面”检测几何形状来测量单个纳米线激光器的输出功率。

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