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Enhanced nonlinear optical properties of nonzero-bandgap graphene materials in glass matrices

机译:玻璃基体中非零带隙石墨烯材料的增强的非线性光学性质

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The third-order nonlinear optical (NLO) properties of the nonzero-bandgap graphene materials, including graphene oxide nanosheets, graphene oxide nanoribbons, graphene quantum dots, and corresponding hybrid glasses, were investigated using ns and ps 2-scan techniques at 532 nm. The observed nonlinear absorption effects were affected by laser duration. Reverse saturable absorption was observed in the ns regime, while saturable absorption dominated in the ps regime. The NLO performance was enhanced in the hybrid glasses. These findings open up new possibilities for the practical application of graphene materials in the NLO field.
机译:使用ns和ps 2扫描技术在532 nm下研究了非零带隙石墨烯材料的三阶非线性光学(NLO)特性,包括氧化石墨烯纳米片,氧化石墨烯纳米带,石墨烯量子点和相应的混合玻璃。观察到的非线性吸收效应受激光持续时间的影响。在ns模式中观察到反向饱和吸收,而在ps模式中则以饱和吸收为主。在混合玻璃中,NLO性能得到增强。这些发现为石墨烯材料在NLO领域的实际应用开辟了新的可能性。

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