Heterodimensional Kondo superlattices with strong anisotropy.

Nat Commun

Key Laboratory of Advanced Optoelectronic Quantum Architecture and Measurement (MOE), School of Physics, Beijing Institute of Technology, Beijing, China.

Published: June 2024

AI Article Synopsis

  • Localized magnetic moments in non-magnetic materials can significantly impact their metallic properties, leading to phenomena like the Kondo effect and heavy fermion behavior.
  • This study focuses on a heterodimensional superlattice structure made of one-dimensional VS chains surrounded by two-dimensional VS layers, where the Kondo effect is observed to exhibit unusual anisotropic behavior.
  • The anisotropy in the Kondo effect is linked to the unique magnetic properties of the 1D chains, as confirmed by advanced calculations, paving the way for new research in exotic correlated physics within heterodimensional materials.

Article Abstract

Localized magnetic moments in non-magnetic materials, by interacting with the itinerary electrons, can profoundly change the metallic properties, developing various correlated phenomena such as the Kondo effect, heavy fermion, and unconventional superconductivity. In most Kondo systems, the localized moments are introduced through magnetic impurities. However, the intrinsic magnetic properties of materials can also be modulated by the dimensionality. Here, we report the observation of Kondo effect in a heterodimensional superlattice VS-VS, in which arrays of the one-dimensional (1D) VS chains are encapsulated by two-dimensional VS layers. In such a heterodimensional Kondo superlattice, we observe the typical Kondo effect but with intriguing anisotropic field dependence. This unique anisotropy is determined to originate from the magnetic anisotropy which has the root in the unique 1D chains in the structure, as corroborated by the first-principles calculation. Our results open up a novel avenue of studying exotic correlated physics in heterodimensional materials.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11214635PMC
http://dx.doi.org/10.1038/s41467-024-49618-xDOI Listing

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Similar Publications

Heterodimensional Kondo superlattices with strong anisotropy.

Nat Commun

June 2024

Key Laboratory of Advanced Optoelectronic Quantum Architecture and Measurement (MOE), School of Physics, Beijing Institute of Technology, Beijing, China.

Article Synopsis
  • Localized magnetic moments in non-magnetic materials can significantly impact their metallic properties, leading to phenomena like the Kondo effect and heavy fermion behavior.
  • This study focuses on a heterodimensional superlattice structure made of one-dimensional VS chains surrounded by two-dimensional VS layers, where the Kondo effect is observed to exhibit unusual anisotropic behavior.
  • The anisotropy in the Kondo effect is linked to the unique magnetic properties of the 1D chains, as confirmed by advanced calculations, paving the way for new research in exotic correlated physics within heterodimensional materials.
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