Authors
Evie Ladbrook, Jon P Wright, Mark S Senn
Published in
Physical review letters. Volume 137. Issue 12. Pages 126504. Sep 18, 2026.
Abstract
Structural phase transitions generate complex microstructures that often govern material functionality, yet directly resolving their three-dimensional organization in bulk samples remains challenging. Here we employ scanning three-dimensional x-ray diffraction (3DXRD) to resolve the bulk microstructure of La_{1.675}Eu_{0.2}Sr_{0.125}CuO_{4}, a prototypical 1/8-doped cuprate in which structural and electronic heterogeneity is well established. We reveal remarkably broad tetragonallike domain wall regions within the nominally orthorhombic crystal structure, and, upon cooling to 100 K, a fine microstructure of orthorhombiclike stripes embedded within the tetragonal matrix that has significant consequences for interpreting the interplay between structural and electronic heterogeneity in this class of materials. More broadly, this work establishes 3DXRD as a powerful approach for resolving bulk microstructures and understanding their role in emergent functionality.
PMID:
42826987
Bibliographic data and abstract were imported from PubMed on 03 Oct 2026.
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