激光阈值
材料科学
随机激光器
聚苯乙烯
增益开关
激光器
光子晶体
罗丹明B
光电子学
光子学
兴奋剂
折射率
胶体晶体
罗丹明
有源激光介质
染料激光器
光学
胶体
激光功率缩放
聚合物
复合材料
化学工程
荧光
物理
波长
生物化学
催化作用
化学
光催化
工程类
作者
Sunita Kedia,Sucharita Sinha
摘要
Advance designs of random lasers toward the development of miniature laser systems are in demand. Random lasing from Rhodamine-B dye doped polystyrene microparticles was demonstrated. Bare polystyrene spheres were used as scatterers, and these provided optical feedback to the gain. Random lasing was successfully demonstrated in two different disordered environments: in binary colloidal solution and in photonic glass. Incoherent feedback occurred in both the cases, and laser emission was obtained with a spectral line width of ∼10 nm. Optimized number densities of bare and dye doped polystyrene microparticles required for random lasing action in such systems were evaluated. Although both disordered media showed random lasing with similar number densities of the microparticles, the lasing threshold in the case of photonic glass was lower in comparison to binary colloidal solution. This was because of higher index contrast and larger filling fraction of microparticles in the case of photonic glass. Lasing results obtained for photonic glass were compared with their previous results of Bloch lasing in photonic crystal synthesized using similar dye doped polystyrene microparticles.
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