摘要
在液相环境中,利用纳秒(ns)脉冲激光器轰击消融铬掺杂ZnSe(Cr^2+:ZnSe)微米颗粒,制备出Cr^2+:ZnSe纳米粒子,扫描电镜以及X射线衍射检测,结果显示,制备所得的粒子为平均尺寸为50nm的ZnSe闪锌矿结构纳米粒子。基于Cr^2+:ZnSe纳米粒子,观察到中心波长为2180nm、阈值为0.4mJ/pulse的随机激光效应。相比于Cr^2+:ZnSe晶体激光器,纳米粒子随机激光的中心波长发生了约170nm的蓝移,Cr^2+:ZnSe纳米粒子的光致发光寿命也比Cr^2+:ZnSe晶体要短。
Synthesized chromium doped ZnSe nanocrystalline particles (Cr^2+: ZnSe NCPs) by using nanosecond pulsed laser ablation of polyerystalline Cr^2+: ZnSe micron-sized powder in liquid environment. The scanning electron micrseope and X-ray diffraction results revealed that the products were ZnSe cubic sphalerite structure with an average size around 60nm. Based on the Cr^2+: ZnSe nanoparticles, typical random laser emissions centering at 2175 nm with a threshold of 0.4 m J/pulse were observed. Compared to the Cr^2+: ZnSe bulk laser, the central wavelength showed about 175nm blue-shift. The photoluminescence lifetime of Cr^2+: ZnSe NCPs was shorter than that of Cr^2+: ZnSe bulk.