Okazaki Kota, Nakamura Daisuke, Higashihata Mitsuhiro, Iyamperumal Palani, Okada Tatsuo
Department of Electrical Engineering, Kyushu University, 744, Motooka, Nishi-ku, Fukuoka 819-0395, Japan.
Opt Express. 2011 Oct 10;19(21):20389-94. doi: 10.1364/OE.19.020389.
We report the lasing characteristics of a single ZnO nanosheet optically pumped by ultraviolet laser beam. The ZnO nanosheets were synthesized by a carbothermal chemical vapor deposition method. The ZnO nanosheets dispersed on a silica glass substrate were excited by the third-harmonic of a Q-switched Nd:YAG laser (λ = 355 nm, τ = 5 ns) and photoluminescence from a single ZnO nanosheet was observed. The observed emission spectra showed the obvious lasing characteristics having modal structure and threshold characteristics. The threshold power for lasing was measured to be 50 kW/cm2, which was much lower than 150 kW/cm2, the threshold power of the reference ZnO nanowire. It indicates that the ZnO nanosheet is a superior gain medium for an ultraviolet laser. The oscillation mechanism inside a ZnO nanosheet is attributed to the micro-cavity effect, based on the three-dimensional laser-field simulation.
我们报道了由紫外激光束光泵浦的单个ZnO纳米片的激光特性。ZnO纳米片通过碳热化学气相沉积法合成。分散在石英玻璃衬底上的ZnO纳米片由调Q Nd:YAG激光的三次谐波(λ = 355 nm,τ = 5 ns)激发,并观察到单个ZnO纳米片的光致发光。观察到的发射光谱显示出具有模式结构和阈值特性的明显激光特性。测得的激光阈值功率为50 kW/cm2,远低于参考ZnO纳米线的阈值功率150 kW/cm2。这表明ZnO纳米片是一种优异的紫外激光增益介质。基于三维激光场模拟,ZnO纳米片内部的振荡机制归因于微腔效应。