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DOI10.1038/s41586-020-2058-6
Observation of the Kondo screening cloud
Shahnawaz, Mohammad1; Mukherjee, Abhisek1; Pritzkow, Sandra1; Mendez, Nicolas1; Rabadia, Prakruti1; Liu, Xiangan2; Hu, Bo2; Schmeichel, Ann3; Singer, Wolfgang3; Wu, Gang4; Tsai, Ah-Lim4; Shirani, Hamid5; Nilsson, K. Peter R.5; Low, Phillip A.3; Soto, Claudio1
2020-02-05
发表期刊NATURE
ISSN0028-0836
EISSN1476-4687
出版年2020
卷号579期号:7798页码:210-+
文章类型Article
语种英语
国家Peoples R China; South Korea; Japan; Germany
英文关键词

When a magnetic impurity exists in a metal, conduction electrons form a spin cloud that screens the impurity spin. This basic phenomenon is called the Kondo effect(1,2). Unlike electric-charge screening, the spin-screening cloud(3-6) occurs quantum coherently, forming spin-singlet entanglement with the impurity. Although the spins interact locally around the impurity, the Kondo cloud can theoretically spread out over several micrometres. The cloud has not so far been detected, and so its physical existence-a fundamental aspect of the Kondo effect-remains controversial(7,8). Here we present experimental evidence of a Kondo cloud extending over a length of micrometres, comparable to the theoretical length xi(K). In our device, a Kondo impurity is formed in a quantum dot(2,9-11), coupling on one side to a quasi-one-dimensional channel(12) that houses a Fabry-Perot interferometer of various gate-defined lengths L exceeding one micrometre. When we sweep a voltage on the interferometer end gate-separated by L from the quantum dot-to induce Fabry-Perot oscillations in conductance we observe oscillations in the measured Kondo temperature T-K, which is a signature of the Kondo cloud at distance L. When L is less than xi(K) the T-K oscillation amplitude becomes larger as L becomes smaller, obeying a scaling function of a single parameter L/xi(K), whereas when L is greater than xi(K) the oscillation is much weaker. Our results reveal that xi(K) is the only length parameter associated with the Kondo effect, and that the cloud lies mostly within a length of xi(K). Our experimental method offers a way of detecting the spatial distribution of exotic non-Fermi liquids formed by multiple magnetic impurities or multiple screening channels(13-16) and of studying spin-correlated systems.


领域地球科学 ; 气候变化 ; 资源环境
收录类别SCI-E
WOS记录号WOS:000519378900018
WOS关键词IMPURITIES ; TRANSPORT ; SPIN
WOS类目Multidisciplinary Sciences
WOS研究方向Science & Technology - Other Topics
引用统计
被引频次:50[WOS]   [WOS记录]     [WOS相关记录]
文献类型期刊论文
条目标识符http://119.78.100.173/C666/handle/2XK7JSWQ/281102
专题地球科学
资源环境科学
气候变化
作者单位1.Univ Texas Houston, Dept Neurol, McGovern Med Sch Houston, Mitchell Ctr Alzheimers Dis & Related Brain Disor, Houston, TX 77004 USA;
2.Univ Texas Houston, Dept Microbiol & Mol Genet, McGovern Med Sch Houston, Houston, TX USA;
3.Mayo Clin, Dept Neurol, Rochester, MN USA;
4.Univ Texas Houston, Dept Internal Med, Div Hematol, McGovern Med Sch Houston, Houston, TX USA;
5.Linkoping Univ, Dept Phys Chem & Biol, Linkoping, Sweden
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GB/T 7714
Shahnawaz, Mohammad,Mukherjee, Abhisek,Pritzkow, Sandra,et al. Observation of the Kondo screening cloud[J]. NATURE,2020,579(7798):210-+.
APA Shahnawaz, Mohammad.,Mukherjee, Abhisek.,Pritzkow, Sandra.,Mendez, Nicolas.,Rabadia, Prakruti.,...&Soto, Claudio.(2020).Observation of the Kondo screening cloud.NATURE,579(7798),210-+.
MLA Shahnawaz, Mohammad,et al."Observation of the Kondo screening cloud".NATURE 579.7798(2020):210-+.
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