凝聚态物理
费米液体理论
超级交换
物理
旋转
反铁磁性
莫特绝缘子
兴奋剂
电子
莫特跃迁
赫巴德模型
极化子
费米能量
量子力学
超导电性
作者
Joannis Koepsell,Dominik Bourgund,Pimonpan Sompet,Sarah Hirthe,Annabelle Bohrdt,Yao Wang,Fabian Grusdt,Eugene Demler,Guillaume Salomon,Christian Groß,Immanuel Bloch
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2021-09-30
卷期号:374 (6563): 82-86
被引量:102
标识
DOI:10.1126/science.abe7165
摘要
The competition between antiferromagnetism and hole motion in two-dimensional Mott insulators lies at the heart of a doping-dependent transition from an anomalous metal to a conventional Fermi liquid. Condensed matter experiments suggest charge carriers change their nature within this crossover, but a complete understanding remains elusive. We observe such a crossover in Fermi-Hubbard systems on a cold-atom quantum simulator and reveal the transformation of multi-point correlations between spins and holes upon increasing doping at temperatures around the superexchange energy. Conventional observables, such as spin susceptibility, are furthermore computed from the microscopic snapshots of the system. Starting from a magnetic polaron regime, we find the system evolves into a Fermi liquid featuring incommensurate magnetic fluctuations and fundamentally altered correlations. The crossover is completed for hole dopings around $30\%$. Our work benchmarks theoretical approaches and discusses possible connections to lower temperature phenomena.
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