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Synthesis and Nano-Processing of ZnO Nano-Crystals for Controlled Laser Action

机译:控制激光作用ZnO纳米晶体的合成和纳米加工

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Lasing characteristics of a single Zinc oxide (ZnO) nanosheet and a single ZnO nanowire were investigated by an ultraviolet light excitation. ZnO nanocrystals were synthesized by chemical vapor deposition (CVD) method, and those ZnO nanocrystals were excited by a third-harmonic Q-switched Nd:YAG laser beam (355 nm, 5 ns). The emission spectra from a single ZnO nanocrystal was collected by an objective lens with a magnification factor of 100 or 50, coupled with a spectrometer with a light fiber. The area observed by the spectrometer is about 10 μm in diameter, and therefore the emission spectra from a single ZnO nanocrystal can be observed. The emission spectra showed the obvious lasing characteristics having mode structure and a threshold for lasing. The lasing threshold power density of a ZnO nanosheet and a ZnO nanowire were measured to be about 60 kW/cm~2 and 150 kW/cm~2, respectively. ZnO nanosheet can be a superior laser medium due to the lower threshold for lasing compared to the threshold of the ZnO nanowire. However, since the lasing spectra had mode structure, a single-longitudinal mode lasing would be required for a practical application. The single longitudinal mode lasing can be realized by a nanomachining of a grating on the ZnO nanocrystal surface due to distributed bragg reflector (DBR) laser. The minimum DBR pitch was estimated to be about 81 nm, which can be machined by focused-ion beam (FIB) focused up to 7 nm at minimum, and therefore, we demonstrated the nanomachining on a single ZnO nanowire. However, the single-longitudinal mode lasing was not observed so far, and thus optimization of experimental conditions such as the DBR pitch, ion dose amount and increasing the number of repetition of DBR would be required.
机译:通过紫外光激发研究了单次氧化锌(ZnO)纳米液和单ZnO纳米线的激光特性。通过化学气相沉积(CVD)方法合成ZnO纳米晶体,并通过第三谐波Q开关Nd:YAG激光束(355nm,5ns)激发那些ZnO纳米晶体。由单个ZnO纳米晶体的发射光谱由具有100或50的放大因子的物镜收集,与具有光纤的光谱仪偶联。光谱仪观察到的区域的直径约为10μm,因此可以观察到来自单个ZnO纳米晶体的发射光谱。发射光谱显示出具有模式结构的明显激光特性和用于激光的阈值。测量ZnO纳米片和ZnO纳米线的激光阈值功率密度分别为约60kW / cm〜2和150kW / cm〜2。与ZnO纳米线的阈值相比,ZnO Nanoshepe可以是优异的激光介质,因为与ZnO纳米线的阈值相比。然而,由于激光光谱具有模式结构,因此实际应用需要单纵向模式激光。由于分布式布拉格反射器(DBR)激光器,通过ZnO纳米晶体表面上的光栅的纳米机械,可以实现单个纵向模式激光。最小DBR间距估计为约81nm,其可以通过聚焦离子束(FIB)加工成聚焦至7nm,因此,我们在单个ZnO纳米线上证明了纳米载物。然而,到目前为止未观察到单纵向模式激光,因此需要优化DBR间距,离子剂量量的实验条件,以及增加DBR的重复次数。

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