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调谐重费米子化合物 CeIn3 的维度。

Tuning the dimensionality of the heavy fermion compound CeIn3.

机构信息

Department of Physics, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Science. 2010 Feb 19;327(5968):980-3. doi: 10.1126/science.1183376.

Abstract

Condensed-matter systems that are both low-dimensional and strongly interacting often exhibit unusual electronic properties. Strongly correlated electrons with greatly enhanced effective mass are present in heavy fermion compounds, whose electronic structure is essentially three-dimensional. We realized experimentally a two-dimensional heavy fermion system, adjusting the dimensionality in a controllable fashion. Artificial superlattices of the antiferromagnetic heavy fermion compound CeIn3 and the conventional metal LaIn3 were grown epitaxially. By reducing the thickness of the CeIn3 layers, the magnetic order was suppressed and the effective electron mass was further enhanced. Heavy fermions confined to two dimensions display striking deviations from the standard Fermi liquid low-temperature electronic properties, and these are associated with the dimensional tuning of quantum criticality.

摘要

低维且强相互作用的凝聚态系统通常表现出异常的电子性质。重费米子化合物中存在具有增强有效质量的强关联电子,其电子结构本质上是三维的。我们通过外延生长反铁磁重费米子化合物 CeIn3 和传统金属 LaIn3 的人工超晶格,实验上实现了二维重费米子系统,并以可控的方式调整其维度。通过减小 CeIn3 层的厚度,抑制了磁有序并进一步增强了有效电子质量。限制在二维的重费米子表现出与标准费米液体低温电子性质的显著偏离,这与量子临界点的维度调谐有关。

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