Pressure Control of Nonferroelastic Ferroelectric Domains in ErMnO<sub>3</sub>.

Sandvik, Olav W; Müller, Aaron Merlin; Ånes, Håkon W; Zahn, Manuel; He, Jiali; Fiebig, Manfred; Lottermoser, Thomas; Rojac, Tadej et al. · Nano Lett · 2023

basic_science · Level V

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Abstract

Mechanical pressure controls the structural, electric, and magnetic order in solid-state systems, allowing tailoring of their physical properties. A well-established example is ferroelastic ferroelectrics, where the coupling between pressure and the primary symmetry-breaking order parameter enables hysteretic switching of the strain state and ferroelectric domain engineering. Here, we study the pressure-driven response in a nonferroelastic ferroelectric, ErMnO<sub>3</sub>, where the classical stress-strain coupling is absent and the domain formation is governed by creation-annihilation processes of topological defects. By annealing ErMnO<sub>3</sub> polycrystals under variable pressures in the MPa regime, we transform nonferroelastic vortex-like domains into stripe-like domains. The width of the stripe-like domains is determined by the applied pressure as we confirm by three-dimensional phase field simulations, showing that pressure leads to oriented layer-like periodic domains. Our work demonstrates the possibility to utilize mechanical pressure for domain engineering in nonferroelastic ferroelectrics, providing a lever to control their dielectric and piezoelectric responses.