近藤效应
物理
凝聚态物理
近藤绝缘体
安德森杂质模型
近藤模型
磁性杂质
电子
量子
杂质
从头算
量子点
量子力学
强相关材料
电子相关
从头算量子化学方法
匹配(统计)
电子结构
系列(地层学)
作者
Tianyu Zhu,Linqing Peng,Huanchen Zhai,Zhi‐Hao Cui,Runze Chi,Garnet Kin‐Lic Chan
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2026-07-30
卷期号:393 (6810): 522-526
标识
DOI:10.1126/science.adq7402
摘要
The Kondo effect is a prototypical quantum phenomenon arising from the interaction between localized electrons in a magnetic impurity and itinerant electrons in a metallic host. Although this phenomenon has served as the testing ground for quantum many-body methods for decades, the precise description of Kondo physics with material specificity remains challenging. Here, we present a systematic ab initio approach to converge toward an exact zero-temperature electronic treatment of Kondo correlations. Across a series of 3d transition metals, we extracted Kondo temperatures matching subtle experimental trends, with accuracy exceeding that of standard models. We further obtained microscopic insight into the origin of these trends. More broadly, we demonstrate the possibility to start from fully ab initio many-body simulations and push toward the realm of converged predictions.
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