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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - A Route to Dirac Liquid Theory: A Fermi Liquid Description for Dirac Materials
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APS -APS March Meeting 2017 - Event - A Route to Dirac Liquid Theory: A Fermi Liquid Description for Dirac Materials

机译:APS -APS 2017年3月会议-活动-狄拉克液体理论的途径:狄拉克材料的费米液体描述

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摘要

Since the pioneering work developed by L.V. Landau sixty years ago, Fermi Liquid Theory has seen great success in describing interacting Fermi systems. While much interest has been generated over the study of non-Fermi Liquid systems, Fermi Liquid theory serves as a formidable model for many systems and offers a rich amount of of results and insight. The recent classification of Dirac Materials, and the lack of a unifying theoretical framework for them, has motivated our study. Dirac materials are a versatile class of materials in which an abundance of unique physical phenomena can be observed. Such materials are found in all dimensions, with the shared property that their low-energy fermionic excitations behave as massless Dirac fermions and are therefore governed by the Dirac equation. The most popular Dirac material, graphene, is the focus of this work. We present our Fermi Liquid description of Graphene. We find many interesting results, specifically in the transport and dynamics of the system. Additionally, we expand on previous work regarding the Virial Theorem and its impact on the Fermi Liquid parameters in graphene. Finally, we remark on viscoelasticity of Dirac Materials and other unusual results that are consequences of AdS-CFT.
机译:自L.V.六十年前的兰道,费米液体理论在描述相互作用的费米系统方面取得了巨大的成功。尽管人们对非费米液体系统的研究引起了极大的兴趣,但费米液体理论是许多系统的强大模型,并提供了丰富的结果和见解。狄拉克材料的最新分类以及缺乏统一的理论框架促使我们的研究。狄拉克材料是一类用途广泛的材料,在其中可以观察到大量独特的物理现象。此类材料在各个维度上都有发现,其共有的特性是它们的低能铁电激发像无质量的狄拉克费米一样,因此受狄拉克方程式支配。这项研究的重点是最受欢迎的Dirac材料石墨烯。我们介绍石墨烯的费米液体描述。我们发现许多有趣的结果,特别是在系统的传输和动力学方面。此外,我们扩展了关于Vioral定理的先前工作及其对石墨烯中费米液体参数的影响。最后,我们讨论了Dirac材料的粘弹性以及AdS-CFT产生的其他异常结果。

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