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  4. Electron Glass Phase with Resilient Zhang-Rice Singlets in LiCu3O3
 
research article

Electron Glass Phase with Resilient Zhang-Rice Singlets in LiCu3O3

Consiglio, A.
•
Gatti, G.  
•
Martino, Edoardo  
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March 20, 2024
Physical Review Letters

LiCu3O3 is an antiferromagnetic mixed valence cuprate where trilayers of edge -sharing Cu(II)O (3d9) are sandwiched in between planes of Cu(I) (3d10) ions, with Li stochastically substituting Cu(II). Angle resolved photoemission spectroscopy (ARPES) and density functional theory reveal two insulating electronic subsystems that are segregated in spite of sharing common oxygen atoms: a Cu dz2/O pz derived valence band (VB) dispersing on the Cu(I) plane, and a Cu 3dx2-y2/O 2px,y derived Zhang-Rice singlet (ZRS) band dispersing on the Cu(II)O planes. First -principle analysis shows the Li substitution to stabilize the insulating ground state, but only if antiferromagnetic correlations are present. Li further induces substitutional disorder and a 2D electron glass behavior in charge transport, reflected in a large 530 meV Coulomb gap and a linear suppression of VB spectral weight at EF that is observed by ARPES. Surprisingly, the disorder leaves the Cu(II)-derived ZRS largely unaffected. This indicates a local segregation of Li and Cu atoms onto the two separate corner -sharing CuoII thorn O2 sub -lattices of the edge sharing Cu(II)O planes, and highlights the ubiquitous resilience of the entangled two hole ZRS entity against impurity scattering.

  • Details
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Type
research article
DOI
10.1103/PhysRevLett.132.126502
Web of Science ID

WOS:001198526900008

Author(s)
Consiglio, A.
Gatti, G.  
Martino, Edoardo  
Moreschini, L.
Johannsen, J. C.  
Prsa, K.  
Freeman, P. G.  
Sheptyakov, D.
Ronnow, H M  
Scopelliti, R  
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Date Issued

2024-03-20

Publisher

Amer Physical Soc

Published in
Physical Review Letters
Volume

132

Issue

12

Article Number

126502

Subjects

Physical Sciences

•

Hopping Conductivity

•

Coulomb Gap

•

Magnetic-Properties

•

Crossover

•

Licu2O2

•

States

•

Mott

•

Band

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSE  
LPMC  
FunderGrant Number

Swiss National Science Foundation

P300P2-171221

Sinergia network Mott Physics Beyond the Heisenberg Model

Deutsche Forschungsgemeinschaft (DFG, German Research Foundation) under Germany's Excellence Strategy through the Wurzburg-Dresden Cluster of Excellence on Complexity and Topology in Quantum Matter ct.qmat

EXC 2147

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Available on Infoscience
May 1, 2024
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/207645
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