A Comparison of Stripe Modulations in La$_{1.875}$Ba$_{0.125}$CuO$_4$ and La$_{1.48}$Nd$_{0.4}$Sr$_{0.12}$CuO$_4$
S.B. Wilkins, M. P. M. Dean, J\"org Fink, Markus H\"ucker, J. Geck, V., Soltwisch, E. Schierle, E. Weschke, G. Gu, S. Uchida, N. Ichikawa, J.M., Tranquada, J.P. Hill

TL;DR
This study compares stripe order modulations in two cuprate compounds using x-ray scattering, revealing differences in amplitude, correlation length, and temperature dependence linked to structural variations.
Contribution
It provides a detailed comparison of electronic and lattice stripe modulations in La-based cuprates, highlighting how structural differences influence stripe order characteristics.
Findings
Larger modulation amplitude in La$_{1.875}$Ba$_{0.125}$CuO$_4$
Longer in-plane correlation length in La$_{1.875}$Ba$_{0.125}$CuO$_4$
Temperature independence of modulations in La$_{1.875}$Ba$_{0.125}$CuO$_4$
Abstract
We report combined soft and hard x-ray scattering studies of the electronic and lattice modulations associated with stripe order in LaBaCuO and LaNdSrCuO. We find that the amplitude of both the electronic modulation of the hole density and the strain modulation of the lattice is significantly larger in LaBaCuO than in LaNdSrCuO and is also better correlated. The in-plane correlation lengths are isotropic in each case; for LaBaCuO, \AA\ whereas for LaNdSrCuOF, \AA. We find that the modulations are temperature independent in LaBaCuO in the low temperature tetragonal phase. In contrast, in LaNdSrCuO, the amplitude grows smoothly from…
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