Pressure-Driven Structural Transitions without a Displacive Charge-Density Wave in La$_2$SmNi$_2$O$_7$
Abstract
We investigated the structural properties of bilayer nickelate LaSmNiO as a function of pressure and temperature. At ambient conditions, we show that the material crystallizes as a monoclinic superstructure distinct from the one previously reported and close to the pseudo-orthorhombic structure of pristine LaNiO. No signatures of satellite reflections associated with charge density wave (CDW) ordering are detected at low temperature. Upon compression, a sequence of pressure-induced structural transitions from monoclinic to orthorhombic 15 GPa and then tetragonal 21 GPa symmetry is observed. Within the superconducting dome, the quality of the X-ray diffraction data enables structural refinements enabling theoretical models to understand the emergence of superconductivity.
Keywords
Cite
@article{arxiv.2607.03363,
title = {Pressure-Driven Structural Transitions without a Displacive Charge-Density Wave in La$_2$SmNi$_2$O$_7$},
author = {J. Huang and Sitaram Ramakrishnan and P. Rodière and P. Toulemonde and Z. Rahmany and V. Balédent and B. Vignolle and Sourav Marik and P. Fertey and P. Foury-Leylekian},
journal= {arXiv preprint arXiv:2607.03363},
year = {2026}
}
Comments
8 pages, 5 figures