激光阈值
材料科学
超材料
石墨烯
激光器
光电子学
罗丹明6G
光学
光子学
光学腔
有源激光介质
随机激光器
饱和吸收
激光功率缩放
纳米技术
物理
光纤激光器
波长
荧光
作者
Andrea Marini,F. Javier Garcı́a de Abajo
标识
DOI:10.1103/physrevlett.116.217401
摘要
Manipulating and controlling the optical energy flow inside random media is a research frontier of photonics and the basis of novel laser designs. Here, we show that a metamaterial consisting of randomly dispersed graphene nanoflakes embedded within an optically pumped gain medium (rhodamine 6G) can operate as a cavity-free laser thanks to its extraordinarily low threshold for saturable absorption. The emitted light is self-organized into a well-determined spatial pattern, which depends on the graphene flake density and can be externally controlled through the optical pump. We provide different examples of tunable laser operation ranging from stable single-mode to chaoticlike behavior. Our metamaterial design holds great potential for the optical control of light amplification, as well as for the development of single-mode beam-engineered cavity-free lasers.
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