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Raman scattering in iron-based superconductors

机译:铁基超导体中的拉曼散射

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摘要

Iron-based superconducting layered compounds have the second highest transition temperature after cuprate superconductors. Their discovery is a milestone in the history of high-temperature superconductivity and will have profound implications for high-temperature superconducting mechanism as well as industrial applications. Raman scattering has been extensively applied to correlated electron systems including the new superconductors due to its unique ability to probe multiple primary excitations and their coupling. In this review, we will give a brief summary of the existing Raman experiments in the iron-based materials and their implications for pairing mechanism in particular. And we will also address some open issues from the experiments.
机译:铁基超导层状化合物的转变温度仅次于铜酸盐超导体。他们的发现是高温超导历史上的一个里程碑,并将对高温超导机理以及工业应用产生深远的影响。拉曼散射由于其探测多种初级激发及其耦合的独特能力,已被广泛应用于包括新超导体在内的相关电子系统。在这篇综述中,我们将简要概述现有的铁基材料拉曼实验及其对配对机理的影响。我们还将解决实验中的一些未解决问题。

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