凝聚态物理
物理
对称(几何)
超导电性
各向异性
各向同性
匡威
拓扑绝缘体
重整化群
导线
全局对称性
旋转对称性
量子力学
对称性破坏
自发对称破缺
数学
几何学
机械
作者
Piotr Chudziński,Maarten Berben,Xiaofeng Xu,Nicholas A. Wakeham,Bence Bernáth,Caitlin Duffy,R. D. H. Hinlopen,Yu‐Te Hsu,Steffen Wiedmann,Paul Tinnemans,Rongying Jin,M. Greenblatt,N. E. Hussey
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2023-11-17
卷期号:382 (6672): 792-796
被引量:1
标识
DOI:10.1126/science.abp8948
摘要
Upon cooling, condensed-matter systems typically transition into states of lower symmetry. The converse—i.e., the emergence of higher symmetry at lower temperatures—is extremely rare. In this work, we show how an unusually isotropic magnetoresistance in the highly anisotropic, one-dimensional conductor Li 0.9 Mo 6 O 17 and its temperature dependence can be interpreted as a renormalization group (RG) flow toward a so-called separatrix. This approach is equivalent to an emergent symmetry in the system. The existence of two distinct ground states, Mott insulator and superconductor, can then be traced back to two opposing RG trajectories. By establishing a direct link between quantum field theory and an experimentally measurable quantity, we uncover a path through which emergent symmetry might be identified in other candidate materials.
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