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Nanosecond nonlinear optical extinction in dispersed multi walled carbon nanotubes excited at 532 nm

机译:分散的多壁碳纳米管中南分的非线性光学灭绝在532nm处激发

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Experimental measurements of nonlinear optical extinction of nanosecond laser pulses by a set of conjugated co-polymer/multi walled carbon nanotube composites dispersed in solution is reported here. The polymer poly(meta-phenylenevinylene-co-2,5-dioctyloxy-para-phenylenevinylene) and multi walled carbon nanotube composites were varied according to nanotube mass content. The fabrication technique employed to produce the composite material is discussed. The experiments were performed using an open aperture Z-scan with 6 ns gaussian pulses at 532 nm from a frequency doubled, Q-switched Nd: Yag laser. The nonlinear optical extinction of the incident pulses displays enhanced dissipation of the incident light for lower incident intensities relative to increasing multi walled carbon nanotube content. Either the multi walled carbon nanotubes or the polymer dominates the nonlinear response of the composite depending on the relative mass of polymer to nanotube. Mechanistic implications of the optical dissipation are also discussed and investigated via angular dependent scattering measurements.
机译:据报道,这里,在溶液中分散在溶液中的一组共轭共聚物/多壁碳纳米管复合材料的非线性激光脉冲的实验测量。聚合物聚(Meta-苯乙烯-CO-2,5-二辛酰氧基 - 苯乙烯)和多壁碳纳米管复合材料根据纳米管质量含量而变化。讨论了用于生产复合材料的制造技术。使用开口孔径Z扫描进行实验,通过从频率加倍的Q开关Nd:YAG激光器,在532nm处用6 ns高斯脉冲进行6 ns高斯脉冲进行。入射脉冲的非线性光学灭射显示相对于增加多壁碳纳米管含量的较低入射强度的入射光的增强耗散。多壁碳纳米管或聚合物取决于聚合物的相对质量与纳米管的相对质量主导复合材料的非线性响应。还通过角度依赖性散射测量讨论和研究了光学耗散的机械效力。

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