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Effect of the thin-film limit on the measurable optical properties of graphene

机译:薄膜极限对石墨烯可测光学性能的影响

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摘要

The fundamental sheet conductance of graphene can be directly related to the product of its absorption coefficient, thickness and refractive index. The same can be done for graphene’s fundamental opacity if the so-called thin-film limit is considered. Here, we test mathematically and experimentally the validity of this limit on graphene, as well as on thin metal and semiconductor layers. Notably, within this limit, all measurable properties depend only on the product of the absorption coefficient, thickness, and refractive index. As a direct consequence, the absorptance of graphene depends on the refractive indices of the surrounding media. This explains the difficulty in determining separately the optical constants of graphene and their widely varying values found in literature so far. Finally, our results allow an accurate estimation of the potential optical losses or gains when graphene is used for various optoelectronic applications.
机译:石墨烯的基本薄层电导可以直接与其吸收系数,厚度和折射率的乘积相关。如果考虑所谓的薄膜极限,则可以对石墨烯的基本不透明度进行相同的处理。在这里,我们在数学上和实验上测试了对石墨烯,薄金属和半导体层的限制的有效性。明显地,在该极限内,所有可测量的性质仅取决于吸收系数,厚度和折射率的乘积。直接的结果是,石墨烯的吸收率取决于周围介质的折射率。这解释了目前难以单独确定石墨烯的光学常数及其广泛变化的值的困难。最后,当石墨烯用于各种光电应用时,我们的结果可以准确估算潜在的光学损耗或增益。

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