Interdependent scaling of long-range oxygen and magnetic ordering in non-stoichiometric Nd${}_2$NiO${}_{4.10}$
Sumit Ranjan Maity, Monica Ceretti, Lukas Keller, J\"urg Schefer,, Martin Meven, Ekaterina Pomjakushina, Werner Paulus

TL;DR
This study reveals a complex interplay between oxygen and magnetic ordering in Nd${}_2$NiO${}_{4.10}$, showing coexisting modulated structures and multiple magnetic phase transitions at low temperatures.
Contribution
It uncovers the interdependent long-range oxygen and magnetic orderings in a low oxygen-doped Nd${}_2$NiO${}_{4.10}$, highlighting their simultaneous modulated structures.
Findings
Presence of a 3D modulated oxygen structure at ambient temperature.
Coexistence of oxygen and magnetic orderings below 48 K.
Two magnetic phase transitions at 48 K and 20 K.
Abstract
Hole doping in NdNiO can be either achieved by substituting the trivalent Nd atoms by bivalent alkaline earth metals or by oxygen doping, yielding NdNiO. In this study, we investigated the interplay between oxygen and spin ordering for a low oxygen doping concentration i.e. NdNiO. Although the extra oxygen doping level remains rather modest with only one out of 20 possible interstitial tetrahedral lattice sites occupied, we observed by single crystal neutron diffraction the presence of a complex 3D modulated structure related to oxygen ordering already at ambient, the modulation vectors being 2/13\textit{\textbf{a*}}3/13\textit{\textbf{b*}}, 3/13\textit{\textbf{b*}}2/13\textit{\textbf{b*}} and 1/5\textit{\textbf{a*}}1/2\textit{\textbf{c*}} and satellite reflections up to fourth order. Temperature…
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