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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >A comprehensive dual beam approach for broadband control of ultrafast optical nonlinearity in reduced graphene oxide
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A comprehensive dual beam approach for broadband control of ultrafast optical nonlinearity in reduced graphene oxide

机译:氧化石墨烯超超速光学非线性宽带控制综合双光束方法

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摘要

A unique delay-dependent dynamic switching of optical nonlinearity in terms of saturation absorption (SA) and excited state absorption (ESA) in graphene oxide (GO) and reduced graphene oxide (RGO2 and RGO100) is achieved with an optical pump and white light super-continuum probe only above a threshold pump intensity. Infrared and chemical reduction are used to obtain RGO2 and RGO100 respectively. The switching regime of probe wavelength can be modulated by varying either pump wavelength or degree of reduction. When pumped at 415 nm, the threshold pump intensity to obtain switching property decreases to 9 GW/cm(2) for RGO2 from 18 GW/cm(2) in GO and the tunability range shifts from 471 to 526 nm for as grown GO to 519-623 nm in maximally reduced RGO2. Though the saturation intensity of intrinsic non-degenerate two photon absorption (nd-TPA) is found to be lower in GO (4.3 GW/cm(2)) than RGO2 (18.2 GW/cm(2)), nd-TPA coefficient increases from 0.0015 cm/GW (GO) to 0.0026 cm/GW (RGO2) with increasing reduction. The detailed kinetics of the scattering processes show variation as a function of pump power, probe wavelength and degree of reduction. A model band diagram based on amorphous-carbon model and a Tauc analysis are used to explain the unusual nonlinear optical properties. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在饱和吸收(SA)和氧化石墨烯(GO)和还原的石墨烯(RGO2和RGO100)中实现了光学非线性的独特延迟依赖性动态切换(RGO2和RGO100),通过光学泵和白光超级实现-Continuum探针仅高于阈值泵强度。红外和化学还原用于分别获得RGO2和RGO100。探针波长的切换方案可以通过改变泵波长或减少程度来调制。当以415nm泵送时,从18 gw / cm(2)的RGO 2获得切换性的阈值泵强度降至9 gw / cm(2),并且可调性范围从471到526nm移位,因为生长转到519-623 nm最大减少的RGO2。尽管发现内在非退化的两个光子吸收(ND-TPA)的饱和强度比RGO2(4.3gW / cm(2))降低(18.2GW / cm(2)),但是ND-TPA系数增加随着减少的增加,从0.0015cm / gw(go)至0.0026cm / gw(Rgo2)。散射过程的详细动力学显示了作为泵功率,探测波长和减少程度的函数的变化。基于非晶碳模型的模型带图及其分析来解释不寻常的非线性光学性能。 (c)2018年elestvier有限公司保留所有权利。

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