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Database on the nonlinear optical properties of graphene based materials

机译:石墨烯基材料的非线性光学性质数据库

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摘要

The knowledge of optical nonlinearity is pre-requisite for the utility of the nonlinear optical (NLO) materials for optoelectronic device fabrication. Z-scan experimental technique based on the principles of spatial beam distortion, has been successfully employed for years to precisely investigate the NLO parameters. In the field of optical nonlinearity, graphene has proven itself as a strong candidate material owing to the possibility of strong light-matter interactions. A detailed comparison of the NLO properties of graphene and its derivatives (G/GDs) is crucial to identify and accelerate their utility for future flexible optoelectronic device applications. Herein, we share the experimental records of the optical nonlinearity in G/GDs, obtained from the well established Z-scan technique from the available literature, reported in the period from 2009 to 2019 and were extracted from the provided raw data [1]. The data sheet includes material composition, characteristics of the excitation laser source (operating wavelength, laser energy/power/intensity) and the NLO parameters (nonlinear absorption (NLA), nonlinear refraction (NLR), saturation intensity, optical limiting threshold). For practical use, they are tabulated in the present paper and will enable users to search the material data and filter down the set of desired materials using given parameters for their possible optoelectronic device applications. The data is related to the research article entitled “Unraveling absorptive and refractive optical nonlinearities in CVD grown graphene layers transferred onto a foreign quartz substrate” (Agrawal et al., 2019) [2].
机译:光学非线性知识是将非线性光学(NLO)材料用于光电器件制造的先决条件。基于空间光束畸变原理的Z扫描实验技术已成功应用多年,以精确研究NLO参数。在光学非线性领域,由于存在强烈的光-物质相互作用,石墨烯已被证明是一种强大的候选材料。石墨烯及其衍生物(G / GDs)的NLO特性的详细比较对于确定和加快其在未来柔性光电器件应用中的用途至关重要。在这里,我们分享了从现有文献中成熟的Z扫描技术获得的G / GDs光学非线性的实验记录,这些记录是在2009年至2019年期间报道的,并从提供的原始数据中提取[1]。数据表包括材料成分,激发激光源的特性(工作波长,激光能量/功率/强度)和NLO参数(非线性吸收(NLA),非线性折射(NLR),饱和强度,光学极限阈值)。对于实际应用,它们被列在本文件中,并将使用户能够搜索材料数据并使用给定参数为其所需的光电器件应用过滤所需材料的集合。该数据与题为“揭示转移到异质石英衬底上的CVD生长的石墨烯层中吸收和折射光学非线性的研究论文”有关的数据(Agrawal et al。,2019)[2]。

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