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  4. Correlation of the superconducting critical temperature with spin and orbital excitations in (CaxLa1− x)(Ba1. 75− xLa 0. 25) Cu3Oy as measured by resonant inelastic x-ray scattering
 
research article

Correlation of the superconducting critical temperature with spin and orbital excitations in (CaxLa1− x)(Ba1. 75− xLa 0. 25) Cu3Oy as measured by resonant inelastic x-ray scattering

Ellis, David Shai
•
Huang, Yao-Bo
•
Olalde-Velasco, Paul
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2015
Physical Review B

Electronic spin and orbital (dd) excitation spectra of (CaxLa1−x )(Ba1.75−xLa0.25+x)Cu3Oy samples are measured by resonant inelastic x-ray scattering (RIXS). In this compound, Tc of samples with identical hole dopings is strongly affected by the Ca/Ba substitution x due to subtle variations in the lattice constants, while crystal symmetry and disorder as measured by linewidths are x independent. We examine two extreme values of x and two extreme values of hole-doping content y corresponding to antiferromagnetic and superconducting states. The x dependence of the spin-mode energies is approximately the same for both the antiferromagnetic and superconducting samples. This clearly demonstrates that RIXS is sensitive to the superexchange J even in doped samples. A positive correlation between J and the maximum of Tc at optimal doping (T max c) is observed. We also measured the x dependence of the dxy→dx2−y2 and dxz/yz→dx2−y2 orbital splittings. We infer that the effect of the unresolved d3z2−r2→dx2→y2 excitation on T max c is much smaller than the effect of J. There appears to be dispersion in the dxy→dx2−y2 peak of up to 0.05 eV. Our fitting furthermore indicates an asymmetric dispersion for the dxz/yz→dx2−y2 excitation. A peak at ∼0.8 eV is also observed and attributed to a dd excitation in the chain layer.

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Type
research article
DOI
10.1103/PhysRevB.92.104507
Author(s)
Ellis, David Shai
Huang, Yao-Bo
Olalde-Velasco, Paul
Dantz, Marcus
Pelliciari, Jonathan
Drachuck, Gil
Ofer, Rinat
Bazalitsky, Galina
Berger, Jorge
Schmitt, Thorsten
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Date Issued

2015

Published in
Physical Review B
Volume

92

Issue

10

Article Number

104507

Subjects

MPBH

URL

URL

http://mott-physics.epfl.ch
Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
ICMP  
Available on Infoscience
March 26, 2017
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/135796
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