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Ultrafast optical nonlinearity of multi-layered graphene synthesized by the interface growth process

机译:界面生长过程合成的多层石墨烯的超快光学非线性

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摘要

We propose a novel photonic application as well as an optical tool to verify the crystallinity of interface-grown graphene demonstrating passive mode-locked lasers. The interface growth process enables the formation of multi-layered graphene at an interface of substrate and catalyst, therefore directly onto the targeted substrate without a transfer process. The synthesized graphene is characterized using Raman spectroscopy and x-ray photoelectron spectroscopy before ultrashort pulse formation to confirm the validity of the process for high-speed photonic applications of graphene. The resultant pulses have a repetition rate, pulse duration, RF extinction ratio of 14.01MHz, 1.0ps, and 35dB, respectively.
机译:我们提出了一种新颖的光子应用以及一种光学工具,以验证界面生长的石墨烯的结晶度,从而证明了无源锁模激光器。界面生长过程能够在基材和催化剂的界面处形成多层石墨烯,因此无需转移过程即可直接在目标基材上形成。在超短脉冲形成之前,使用拉曼光谱和X射线光电子能谱对合成的石墨烯进行表征,以确认该方法对石墨烯的高速光子应用的有效性。产生的脉冲的重复频率,脉冲持续时间,RF消光比分别为14.01MHz,1.0ps和35dB。

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