Site-specific spin crossover in Fe$_{2}$TiO$_{4}$ post-spinel under high pressures to near a megabar
W. M. Xu, G. R. Hearne, S. Layek, D. Levy, J-P. Iti\'e, M. P., Pasternak, G. Kh. Rozenberg, E. Greenberg

TL;DR
This study reveals site-specific spin crossover and structural phase transitions in Fe$_{2}$TiO$_{4}$ post-spinel under pressures up to 90 GPa, highlighting complex magnetic and structural behavior at extreme conditions.
Contribution
It provides the first detailed analysis of site-specific spin crossover and structural evolution in Fe$_{2}$TiO$_{4}$ under high pressure, combining X-ray diffraction and Mössbauer spectroscopy.
Findings
Site-specific spin crossover initiates at ~40 GPa in Cmcm phase.
Structural transitions from cubic to Pmma occur at high pressures.
Persistent charge gap and strong electron correlations remain at 90 GPa.
Abstract
X-ray diffraction studies to ~90 GPa at room temperature show that FeTiO ferrous inverse spinel undergoes the following sequence of structural transitions : cubic (Fd3m) to tetragonal (I41/amd)to orthorhombic(Cmcm) to orthorhombic(Pmma),at the indicated onset transition pressures. Within the Cmcm phase, site-specific spin crossover is initiated and involves only highly distorted octahedral sites constituting ~25% of all Fe locations. This is manifest as a steeper volume decrease of dV/V0 ~ 3.5% beyond ~40 GPa and an emergent diamagnetic component discerned in 57Fe M\"ossbauer spectroscopy at variable cryogenic temperatures. A subsequent Cmcm to Pmma Fe/Ti disorder-order reconfiguration is facilitated at 6-fold coordinated (octahedral) sites. The rest of the high-spin Fe in 6-fold and 8-fold coordinated sites (~75% abundance) in the Pmma phase exhibit average saturation…
Peer Reviews
No public reviews on file for this paper yet. If you reviewed it on a platform where reviews are public (OpenReview, ICLR, NeurIPS, ICML), you can paste yours below so the community can read it here.
Videos
No videos yet. Explain this paper in a talk, walkthrough, or lecture? Add one.
