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Multi-photon excited coherent random laser emission in ZnO powders

机译:ZnO粉末中的多光子激发连贯的随机激光发射

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摘要

We report the observation and analysis of anti-Stokes coherent random laser (RL) emission from zinc oxide (ZnO) powders excited by one-, two- or three-photon femtosecond laser radiation. The ZnO powders were produced via a novel proteic sol-gel, low-cost and environmentally friendly route using coconut water in the polymerization step of the metal precursor. One- and two-photon excitation at 354 nm and 710 nm, respectively, generated single-band emissions centred at about 387 nm. For three-photon excitation, the emission spectra showed a strong ultraviolet (UV) band (380-396 nm) attributed to direct three-photon absorption from the valence band to the conduction band. The presence of an intensity threshold and a bandwidth narrowing of the UV band from about 20 to 4 nm are clear evidence of RL action. The observation of multiple sub-nanometre narrow peaks in the emission spectra for excitation above the RL threshold is consistent with random lasing by coherent feedback.
机译:我们报告了氧化锌(ZnO)粉末受到一,两光子或三频量子飞秒激光辐射激发的抗螺旋体随机激光(RL)发射的观察和分析。 ZnO粉末是通过在金属前体的聚合步骤中使用椰子水的新型蛋白质溶胶,低成本和环保的途径生产的。 分别在354 nm和710 nm处的单光兴激发,产生的单波段排放为中心约为387 nm。 对于三光子激发,发射光谱显示出强大的紫外线(UV)带(380-396 nm),归因于从价带到传导带的直接三光子吸收。 强度阈值的存在和紫外线从约20至4 nm的带宽缩小是RL作用的明确证据。 在发射光谱中观察到高于RL阈值的激发的多个亚纳米窄峰与连贯反馈的随机激光一致。

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