论文标题
魔法扭曲的三层石墨烯中的电子各向异性
Electronic anisotropy in magic-angle twisted trilayer graphene
论文作者
论文摘要
由于其潜在的与nematicity的联系,电子各向异性一直是各种材料平台上强烈的研究工作的主题。空间各向异性的出现不仅提供了金属相的材料特性的特征,该特性无法通过传统的传输技术访问,而且还为库仑相互作用与电子序列背后的对称性之间的相互作用提供了独特的窗口。在这项工作中,我们利用一种新的角度分辨传输测量(ARTM)的方案来表征魔术角扭曲的三层石墨烯中的电子各向异性。通过分析空间各向异性对Moiré带填充,温度和扭角的依赖性,我们建立了电子各向异性和级联现象之间的第一个实验联系,其中库仑相互作用驱动了相应带填充物附近的许多同性恋过渡。此外,我们报告了电子各向异性与破坏平等和时间逆转对称性的新型电子秩序之间的共存。结合在一起,电子各向异性,级联现象和pt对称性破坏的连接将新的光浮出在魔法石墨烯Moiré系统中的电子秩序的性质上。
Due to its potential connection with nematicity, electronic anisotropy has been the subject of intense research effort on a wide variety of material platforms. The emergence of spatial anisotropy not only offers a characterization of material properties of metallic phases, which cannot be accessed via conventional transport techniques, but it also provides a unique window into the interplay between Coulomb interaction and broken symmetry underlying the electronic order. In this work, we utilize a new scheme of angle-resolved transport measurement (ARTM) to characterize electron anisotropy in magic-angle twisted trilayer graphene. By analyzing the dependence of spatial anisotropy on moiré band filling, temperature and twist angle, we establish the first experimental link between electron anisotropy and the cascade phenomenon, where Coulomb interaction drives a number of isospin transitions near commensurate band fillings. Furthermore, we report the coexistence between electron anisotropy and a novel electronic order that breaks both parity and time reversal symmetry. Combined, the link between electron anisotropy, cascade phenomenon and PT-symmetry breaking sheds new light onto the nature of electronic order in magic-angle graphene moiré systems.