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MoS2/MXene pillared nanocomposite for ultrafast photonics applications

机译:用于超快光子学应用的MoS2/MXene柱状纳米复合材料

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In this work, we used nanocomposite saturable absorbers (SAs) in order to precisely design and modulate the process of compositing the light absorption by band gap engineering. Due to the higher absorption intensity of our MoS2/MXene nanocomposite, we have successfully shortened the pulse duration (1.2 mu s) of SA with enhancing saturable absorption intensity (7.22 MW cm(-2)), and the ultra-fast fiber laser based on this nanocomposite SA has shown wider Q-switching stable range in the case of high pump power. This strategy can efficiently improve the performance of SA and shows the potential application prospect of nanocomposites in nonlinear optics.
机译:在这项工作中,我们使用纳米复合可饱和吸收体(SAs)来精确设计和调制通过带隙工程合成光吸收的过程。由于我们的MoS2/MXene纳米复合材料具有更高的吸收强度,我们成功地缩短了SA的脉冲持续时间(1.2 μ s),提高了可饱和吸收强度(7.22 MW cm(-2)),并且基于该纳米复合材料SA的超快光纤激光器在高泵浦功率的情况下显示出更宽的Q开关稳定范围。该策略可以有效提高SA的性能,并显示出纳米复合材料在非线性光学中的潜在应用前景。

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