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Random laser action in ZnO nanorod arrays embedded in ZnO epilayers

机译:嵌入ZnO外延层的ZnO纳米棒阵列中的随机激光作用

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Random laser action with coherent feedback has been observed in ZnO nanorod arrays embedded in ZnO epilayers. The sample was fabricated by depositing a MgO buffer layer and followed by a layer of ZnO thin film onto a vertically well-aligned ZnO nanorod arrays grown on sapphire substrate. Under 355 nm optical excitation at room temperature, sharp lasing peaks emit at around 390 nm with a linewidth less than 0.4 nm has been observed in all directions. In addition, the dependence of the lasing threshold intensity on the excitation area is shown in good agreement with the random laser theory. Hence, it is demonstrated that random laser action can also be supported in ZnO nanorod arrays.
机译:在嵌入ZnO外延层的ZnO纳米棒阵列中,观察到具有相干反馈的随机激光作用。通过沉积MgO缓冲层,然后将ZnO薄膜层沉积到在蓝宝石衬底上生长的垂直良好排列的ZnO纳米棒阵列上来制作样品。在室温下在355 nm的光激发下,在所有方向上都观察到了在390 nm附近发射的尖锐激光峰,线宽小于0.4 nm。此外,激光阈值强度对激发区的依赖性与随机激光理论非常吻合。因此,证明了在ZnO纳米棒阵列中也可以支持随机激光作用。

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