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The impact of morphology upon the radiation hardness of ZnO layers

机译:形态对ZnO层辐射硬度的影响

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It is shown that ZnO nanorods and nanodots grown by MOCVD exhibit enhanced radiation hardness against high energy heavy ion irradiation as compared to bulk layers. The decrease of the luminescence intensity induced by 130 MeV Xe23+ irradiation at a dose of 1.5 x 10(14) cm(-2) in ZnO nanorods is nearly identical to that induced by a dose of 6 x 10(12) cm(-2) in bulk layers. The damage introduced by irradiation is shown to change the nature of electronic transitions responsible for luminescence. The change of excitonic luminescence to the luminescence related to the tailing of the density of states caused by potential fluctuations occurs at an irradiation dose around 1 x 10(14) cm(-2) and 5 x 10(12) cm(-2) in nanorods and bulk layers, respectively. More than one order of magnitude enhancement of radiation hardness of ZnO nanorods grown by MOCVD as compared to bulk layers is also confirmed by the analysis of the near-bandgap photoluminescence band broadening and the behavior of resonant Raman scattering lines. The resonant Raman scattering analysis demonstrates that ZnO nanostructures are more radiation-hard as compared to nanostructured GaN layers. High energy heavy ion irradiation followed by thermal annealing is shown to be a way for the improvement of the quality of ZnO nanorods grown by electrodeposition and chemical bath deposition.
机译:结果表明,与块状层相比,通过MOCVD生长的ZnO纳米棒和纳米点对高能重离子辐射的辐射硬度更高。 ZnO纳米棒中剂量为1.5 x 10(14)cm(-2)的130 MeV Xe23 +辐射诱导的发光强度的降低与剂量为6 x 10(12)cm(-2)诱导的发光强度的降低几乎相同)的散装层。辐射引起的损伤显示出改变了导致发光的电子跃迁的性质。在大约1 x 10(14)cm(-2)和5 x 10(12)cm(-2)的辐照剂量下,发生由激发波动发光到与由电位波动引起的态密度拖尾有关的发光的变化。分别在纳米棒和体层中。通过分析近带隙光致发光带展宽和共振拉曼散射线的行为,也证实了与块状层相比,通过MOCVD生长的ZnO纳米棒的辐射硬度提高了一个数量级。共振拉曼散射分析表明,与纳米结构的GaN层相比,ZnO纳米结构的抗辐射性更高。高能重离子辐照后进行热退火是提高电沉积和化学浴沉积生长的ZnO纳米棒质量的一种方法。

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