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Magnetically tunable random lasing from polymer dispersed liquid crystal doped ferromagnetic nanoparticles in capillary

机译:毛细管中聚合物分散液晶掺杂铁磁性纳米粒子的磁性可调随机随机激光

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In this paper, magnetically tunable random lasing from a polymer dispersed liquid crystal (PDLC) in a capillary was achieved by means of doping with magnetic nanoparticles (MNPs). We experimentally explored the effects of the concentration of MNPs and the amplitude and direction of the magnetic field on the emission properties of random lasing, such as threshold, envelope of the emission spectrum, and intensities. The related mechanism was also investigated theoretically. Experimental results also showed that weakly tuned effects appeared from the sample with a polymer or pure liquid crystal (LC) doped with MNPs in comparison with PDLCs. Our research would provide an additional way to achieve tunable compact LC-based lasers.
机译:本文通过掺杂掺杂磁性纳米颗粒(MNP)来实现从毛细管中的聚合物分散液晶(PDLC)的磁性可调随机激光。我们通过实验探索了Mnps浓度和磁场的幅度和方向对随机激光的发射特性的影响,例如发射光谱的阈值,包络和强度。理论上还研究了相关机制。实验结果还表明,与PDLC相比,用掺杂有MNP的聚合物或纯液晶(LC)的样品出现弱调谐效果。我们的研究将提供额外的方法来实现可调谐的紧凑型LC基激光。

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